商品数:348件
ページ数:18
【電子書籍なら、スマホ・パソコンの無料アプリで今すぐ読める!】<p>ICOLS features the latest developments in the area of laser spectroscopy and related topics in atomic, molecular, and optical physics and other disciplines. The talks covered a broad range of exciting physics, such as precision tests of fundamental symmetries with atoms and molecules, atomic clocks, quantum many-body physics with ultra-cold atoms, atom interferometry, quantum information science with photons and ions, quantum optics, and ultra-fast atomic and molecular dynamics.The conference program comprised 14 sessions with 9 keynote addresses, 25 invited talks, and 3 hot topic talks. The speakers came from 15 different countries. Ever since the ICOLS conference series originated in 1973, its proceedings have been highly valued by many for capturing important developments in the field and offering the room to represent various aspects of specific research topics. The present volume contains some of the invited talks delivered at the conference.</p>画面が切り替わりますので、しばらくお待ち下さい。
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【電子書籍なら、スマホ・パソコンの無料アプリで今すぐ読める!】
<p>ICOLS features the latest developments in the area of laser spectroscopy and related topics in atomic, molecular, and optical physics and other disciplines. The talks covered a broad range of exciting physics, such as precision tests of fundamental symmetries with atoms and molecules, atomic clocks, quantum many-body physics with ultra-cold atoms, atom interferometry, quantum information science with photons and ions, quantum optics, and ultra-fast atomic and molecular dynamics.The conference program comprised 14 sessions with 9 keynote addresses, 25 invited talks, and 3 hot topic talks. The speakers came from 15 different countries. Ever since the ICOLS conference series originated in 1973, its proceedings have been highly valued by many for capturing important developments in the field and offering the room to represent various aspects of specific research topics. The present volume contains some of the invited talks delivered at the conference.</p>画面が切り替わりますので、しばらくお待ち下さい。
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【電子書籍なら、スマホ・パソコンの無料アプリで今すぐ読める!】<p>This book serves as a foundation for MRI guided laser interstitial thermal therapy (LITT) across neurosurgical diseases. It provides state-of-the-art information on the latest indications and results for LITT in CNS applications, as well as prerequisite historical perspective and technical fundamentals. Written by experts in the field, the text reviews the historical development of LITT, the technical and technological components required to perform LITT, its indications and contraindications, areas that still require investigation, LITT complications, and challenges to starting up LITT within one’s practice. As early adopters of the technology, the authors provide sage advice that reflects the initial learning curves of many of the users. The book then concludes with a practical guide to starting up a LITT practice in the current medical socioeconomic environment.</p> <p><em>Laser Interstitial Thermal Therapy in Neurosurgery</em> is a guide that willallow all neurosurgeons interested in LITT to successfully adopt the technology and incorporate its use seamlessly, safely and appropriately into their individual practices.</p>画面が切り替わりますので、しばらくお待ち下さい。
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【電子書籍なら、スマホ・パソコンの無料アプリで今すぐ読める!】
<p>This book serves as a foundation for MRI guided laser interstitial thermal therapy (LITT) across neurosurgical diseases. It provides state-of-the-art information on the latest indications and results for LITT in CNS applications, as well as prerequisite historical perspective and technical fundamentals. Written by experts in the field, the text reviews the historical development of LITT, the technical and technological components required to perform LITT, its indications and contraindications, areas that still require investigation, LITT complications, and challenges to starting up LITT within one’s practice. As early adopters of the technology, the authors provide sage advice that reflects the initial learning curves of many of the users. The book then concludes with a practical guide to starting up a LITT practice in the current medical socioeconomic environment.</p> <p><em>Laser Interstitial Thermal Therapy in Neurosurgery</em> is a guide that willallow all neurosurgeons interested in LITT to successfully adopt the technology and incorporate its use seamlessly, safely and appropriately into their individual practices.</p>画面が切り替わりますので、しばらくお待ち下さい。
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【電子書籍なら、スマホ・パソコンの無料アプリで今すぐ読める!】<p>This monograph is devoted to the description of the physical fundamentals of laser refractographyーa novel informational-measuring technique for the diagnostics of optically inhomogeneous media and flows, based on the idea of using spatially structured probe laser radiation in combination with its digital recording and c- puter techniques for the differential processing of refraction patterns. Considered are the physical fundamentals of this technique, actual optical schemes, methods of processing refraction patterns, and possible applications. This informational technique can be employed in such areas of science and technology as require remote nonperturbative monitoring of optical, thermophysical, chemical, aerohydrodynamic, and manufacturing processes. The monograph can also be recommended for students and postgraduates of - formational, laser, electro-optical, thermophysical, chemical, and other specialties. Laser refractography is a conceptually novel refraction method for the diagn- tics of inhomogeneous media, based on the idea of using spatially structured probe laser radiation in combination with its digital recording and computer techniques for the differential processing of refraction patterns.</p>画面が切り替わりますので、しばらくお待ち下さい。
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【電子書籍なら、スマホ・パソコンの無料アプリで今すぐ読める!】
<p>This monograph is devoted to the description of the physical fundamentals of laser refractographyーa novel informational-measuring technique for the diagnostics of optically inhomogeneous media and flows, based on the idea of using spatially structured probe laser radiation in combination with its digital recording and c- puter techniques for the differential processing of refraction patterns. Considered are the physical fundamentals of this technique, actual optical schemes, methods of processing refraction patterns, and possible applications. This informational technique can be employed in such areas of science and technology as require remote nonperturbative monitoring of optical, thermophysical, chemical, aerohydrodynamic, and manufacturing processes. The monograph can also be recommended for students and postgraduates of - formational, laser, electro-optical, thermophysical, chemical, and other specialties. Laser refractography is a conceptually novel refraction method for the diagn- tics of inhomogeneous media, based on the idea of using spatially structured probe laser radiation in combination with its digital recording and computer techniques for the differential processing of refraction patterns.</p>画面が切り替わりますので、しばらくお待ち下さい。
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【電子書籍なら、スマホ・パソコンの無料アプリで今すぐ読める!】<p>This thesis covers the few-cycle laser-driven acceleration of electrons in a laser-generated plasma. This process, known as laser wakefield acceleration (LWFA), relies on strongly driven plasma waves for the generation of accelerating gradients in the vicinity of several 100 GV/m, a value four orders of magnitude larger than that attainable by conventional accelerators. This thesis demonstrates that laser pulses with an ultrashort duration of 8 fs and a peak power of 6 TW allow the production of electron energies up to 50 MeV via LWFA. The special properties of laser accelerated electron pulses, namely the ultrashort pulse duration, the high brilliance, and the high charge density, open up new possibilities in many applications of these electron beams.</p>画面が切り替わりますので、しばらくお待ち下さい。
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【電子書籍なら、スマホ・パソコンの無料アプリで今すぐ読める!】
<p>This thesis covers the few-cycle laser-driven acceleration of electrons in a laser-generated plasma. This process, known as laser wakefield acceleration (LWFA), relies on strongly driven plasma waves for the generation of accelerating gradients in the vicinity of several 100 GV/m, a value four orders of magnitude larger than that attainable by conventional accelerators. This thesis demonstrates that laser pulses with an ultrashort duration of 8 fs and a peak power of 6 TW allow the production of electron energies up to 50 MeV via LWFA. The special properties of laser accelerated electron pulses, namely the ultrashort pulse duration, the high brilliance, and the high charge density, open up new possibilities in many applications of these electron beams.</p>画面が切り替わりますので、しばらくお待ち下さい。
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【電子書籍なら、スマホ・パソコンの無料アプリで今すぐ読める!】<p>This book focuses on the physics of laser plasma interactions and presents a complementary and very useful numerical model of plasmas. It describes the linear theory of light wave propagation in plasmas, including linear mode conversion into plasma waves and collisional damping.</p>画面が切り替わりますので、しばらくお待ち下さい。
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【電子書籍なら、スマホ・パソコンの無料アプリで今すぐ読める!】
<p>This book focuses on the physics of laser plasma interactions and presents a complementary and very useful numerical model of plasmas. It describes the linear theory of light wave propagation in plasmas, including linear mode conversion into plasma waves and collisional damping.</p>画面が切り替わりますので、しばらくお待ち下さい。
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【電子書籍なら、スマホ・パソコンの無料アプリで今すぐ読める!】<p>This book offers a comprehensive overview of recent advances in the area of laser-induced breakdown spectroscopy (LIBS), focusing on its application to biological, forensic and materials sciences. LIBS, which was previously mainly used by physicists, chemists and in the industry, has now become a very useful tool with great potential in these other fields as well. LIBS has a unique set of characteristics including minimal destructiveness, remote sensing capabilities, potential portability, extremely high information content, trace analytical sensitivity and high throughput. With its content divided into two main parts, this book provides not only an introduction to the analytical capabilities and methodology, but also an overview of the results of recent applications in the above fields. The application-oriented, multidisciplinary approach of this work is also reflected in the diversity of the expert contributors.</p> <p>Given its breadth, this book will appeal to students, researchers and professionals interested in solving analytical/diagnostic/material characterization tasks with the application of LIBS.</p>画面が切り替わりますので、しばらくお待ち下さい。
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【電子書籍なら、スマホ・パソコンの無料アプリで今すぐ読める!】
<p>This book offers a comprehensive overview of recent advances in the area of laser-induced breakdown spectroscopy (LIBS), focusing on its application to biological, forensic and materials sciences. LIBS, which was previously mainly used by physicists, chemists and in the industry, has now become a very useful tool with great potential in these other fields as well. LIBS has a unique set of characteristics including minimal destructiveness, remote sensing capabilities, potential portability, extremely high information content, trace analytical sensitivity and high throughput. With its content divided into two main parts, this book provides not only an introduction to the analytical capabilities and methodology, but also an overview of the results of recent applications in the above fields. The application-oriented, multidisciplinary approach of this work is also reflected in the diversity of the expert contributors.</p> <p>Given its breadth, this book will appeal to students, researchers and professionals interested in solving analytical/diagnostic/material characterization tasks with the application of LIBS.</p>画面が切り替わりますので、しばらくお待ち下さい。
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【電子書籍なら、スマホ・パソコンの無料アプリで今すぐ読める!】<p>This book deals specifically with the manipulation of atoms by laser light, describing the focusing, channeling and reflection of atoms by laser fields. It also describes the potential fields required to cause the phase change of the wave function necessary for the atomic interactions to occur.</p>画面が切り替わりますので、しばらくお待ち下さい。
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【電子書籍なら、スマホ・パソコンの無料アプリで今すぐ読める!】
<p>This book deals specifically with the manipulation of atoms by laser light, describing the focusing, channeling and reflection of atoms by laser fields. It also describes the potential fields required to cause the phase change of the wave function necessary for the atomic interactions to occur.</p>画面が切り替わりますので、しばらくお待ち下さい。
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【電子書籍なら、スマホ・パソコンの無料アプリで今すぐ読める!】<p>This book discusses helical Ince-Gaussian beams, which are presented as expansions in Hermite-Gaussian modes, and analytical expressions for the orbital angular momentum are obtained for them. In scalar optics, light is described by a complex amplitude, a complex function of three Cartesian coordinates. This function must be a solution to the scalar paraxial Helmholtz equation, which is equivalent to the Schr?dinger equation in quantum mechanics. There are not many known exact analytical solutions of this equation in the form of special functions, only a few dozen. Each such solution can be associated with a certain laser beam, for example, a Bessel, Laguerre-Gaussian or Hermite-Gaussian beam. Each such analytical solution of the Helmholtz equation allows one to fully describe all the features of the light beam before modeling. Find the intensity distribution at any distance from the waist, phase distribution, total beam power and its other characteristics. Therefore, the search for new analytical solutions describing new laser beams, including helical (vortex) beams, which have orbital angular momentum and topological charge, is relevant. This book describes new helical beams that the authors obtained in 2023-2024. These are generalized asymmetric Laguerre-Gaussian and Hermite-Gaussian beams, double and square Bessel-Gaussian and Laguerre-Gaussian beams, and several types of Bessel-Bessel-Gaussian beams. Each such new analytical solution of the Helmholtz paraxial equation is a significant contribution to optics. The book is of interest to a wide range of scientists and engineers working in the field of optics, photonics, laser physics, opto-information technologies and optical instrumentation. It can also be useful for bachelors and masters in the specialties applied mathematics and physics, applied mathematics and informatics, optics and graduate students specializing in these areas.</p>画面が切り替わりますので、しばらくお待ち下さい。
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【電子書籍なら、スマホ・パソコンの無料アプリで今すぐ読める!】
<p>This book discusses helical Ince-Gaussian beams, which are presented as expansions in Hermite-Gaussian modes, and analytical expressions for the orbital angular momentum are obtained for them. In scalar optics, light is described by a complex amplitude, a complex function of three Cartesian coordinates. This function must be a solution to the scalar paraxial Helmholtz equation, which is equivalent to the Schr?dinger equation in quantum mechanics. There are not many known exact analytical solutions of this equation in the form of special functions, only a few dozen. Each such solution can be associated with a certain laser beam, for example, a Bessel, Laguerre-Gaussian or Hermite-Gaussian beam. Each such analytical solution of the Helmholtz equation allows one to fully describe all the features of the light beam before modeling. Find the intensity distribution at any distance from the waist, phase distribution, total beam power and its other characteristics. Therefore, the search for new analytical solutions describing new laser beams, including helical (vortex) beams, which have orbital angular momentum and topological charge, is relevant. This book describes new helical beams that the authors obtained in 2023-2024. These are generalized asymmetric Laguerre-Gaussian and Hermite-Gaussian beams, double and square Bessel-Gaussian and Laguerre-Gaussian beams, and several types of Bessel-Bessel-Gaussian beams. Each such new analytical solution of the Helmholtz paraxial equation is a significant contribution to optics. The book is of interest to a wide range of scientists and engineers working in the field of optics, photonics, laser physics, opto-information technologies and optical instrumentation. It can also be useful for bachelors and masters in the specialties applied mathematics and physics, applied mathematics and informatics, optics and graduate students specializing in these areas.</p>画面が切り替わりますので、しばらくお待ち下さい。
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【電子書籍なら、スマホ・パソコンの無料アプリで今すぐ読める!】画面が切り替わりますので、しばらくお待ち下さい。
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【電子書籍なら、スマホ・パソコンの無料アプリで今すぐ読める!】
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【電子書籍なら、スマホ・パソコンの無料アプリで今すぐ読める!】<p>In order to develop excellent photonic devices, we have to fully understand the physics behind operations of photonic devices. This book thoroughly teaches the fundamental physics currently applied to the development of photonics devices such as energy bands of semiconductors, optical transitions, optical waveguides, and semiconductor junctions. The book also reviews the characteristics of laser diodes, optical filters, and optical functional devices, which have been developed based on the above physics. These photonic devices have been demonstrated in system applications, and several experimental results are described.</p>画面が切り替わりますので、しばらくお待ち下さい。
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<p>In order to develop excellent photonic devices, we have to fully understand the physics behind operations of photonic devices. This book thoroughly teaches the fundamental physics currently applied to the development of photonics devices such as energy bands of semiconductors, optical transitions, optical waveguides, and semiconductor junctions. The book also reviews the characteristics of laser diodes, optical filters, and optical functional devices, which have been developed based on the above physics. These photonic devices have been demonstrated in system applications, and several experimental results are described.</p>画面が切り替わりますので、しばらくお待ち下さい。
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【電子書籍なら、スマホ・パソコンの無料アプリで今すぐ読める!】<p><strong>Principles of Laser Materials Processing</strong></p> <p><strong>Authoritative resource providing state-of-the-art coverage in the field of laser materials processing, supported with supplementary learning materials</strong></p> <p><em>Principles of Laser Materials Processing</em> goes over the most recent advancements and applications in laser materials processing, with the second edition providing a welcome update to the successful first edition through updated content on the important fields within laser materials processing. The text includes solved example problems and problem sets suitable for the readers’ further understanding of the technology explained.</p> <p>Split into three parts, the text first introduces basic concepts of lasers, including the characteristics of lasers and the design of their components, to aid readers in their initial understanding of the technology. The text then reviews the engineering concepts that are needed to analyze the different processes. Finally, it delves into the background of laser materials and provides a state-of-the-art compilation of material in the major application areas, such as laser cutting and drilling, welding, surface modification, and forming, among many others. It also presents information on laser safety to prepare the reader for working in the industry sector and provide practicing engineers the updates needed to work safely and effectively.</p> <p>In <em>Principles of Laser Materials Processing</em>, readers can expect to find specific information on:</p> <ul> <li>Laser generation principles, including basic atomic structure, atomic transitions, population distribution, absorption, and spontaneous emission</li> <li>Optical resonators, including standing waves in a rectangular cavity, planar resonators, beam modes, line selection, confocal resonators, and concentric resonators</li> <li>Laser pumping, including optical pumping, arc/flash lamp pumping, energy distribution in the active medium, and electrical pumping</li> <li>Broadening mechanisms, including line-shape functions, homogeneous broadening such as natural and collision, and inhomogeneous broadening</li> </ul> <p><em>Principles of Laser Materials Processing</em> is highly suitable for senior undergraduate and graduate students studying laser processing, and non-traditional manufacturing processes; it is also aimed at researchers to provide additional information to be used in research projects that are to be undertaken within the technology field.</p>画面が切り替わりますので、しばらくお待ち下さい。
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【電子書籍なら、スマホ・パソコンの無料アプリで今すぐ読める!】
<p><strong>Principles of Laser Materials Processing</strong></p> <p><strong>Authoritative resource providing state-of-the-art coverage in the field of laser materials processing, supported with supplementary learning materials</strong></p> <p><em>Principles of Laser Materials Processing</em> goes over the most recent advancements and applications in laser materials processing, with the second edition providing a welcome update to the successful first edition through updated content on the important fields within laser materials processing. The text includes solved example problems and problem sets suitable for the readers’ further understanding of the technology explained.</p> <p>Split into three parts, the text first introduces basic concepts of lasers, including the characteristics of lasers and the design of their components, to aid readers in their initial understanding of the technology. The text then reviews the engineering concepts that are needed to analyze the different processes. Finally, it delves into the background of laser materials and provides a state-of-the-art compilation of material in the major application areas, such as laser cutting and drilling, welding, surface modification, and forming, among many others. It also presents information on laser safety to prepare the reader for working in the industry sector and provide practicing engineers the updates needed to work safely and effectively.</p> <p>In <em>Principles of Laser Materials Processing</em>, readers can expect to find specific information on:</p> <ul> <li>Laser generation principles, including basic atomic structure, atomic transitions, population distribution, absorption, and spontaneous emission</li> <li>Optical resonators, including standing waves in a rectangular cavity, planar resonators, beam modes, line selection, confocal resonators, and concentric resonators</li> <li>Laser pumping, including optical pumping, arc/flash lamp pumping, energy distribution in the active medium, and electrical pumping</li> <li>Broadening mechanisms, including line-shape functions, homogeneous broadening such as natural and collision, and inhomogeneous broadening</li> </ul> <p><em>Principles of Laser Materials Processing</em> is highly suitable for senior undergraduate and graduate students studying laser processing, and non-traditional manufacturing processes; it is also aimed at researchers to provide additional information to be used in research projects that are to be undertaken within the technology field.</p>画面が切り替わりますので、しばらくお待ち下さい。
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【電子書籍なら、スマホ・パソコンの無料アプリで今すぐ読める!】<p>The Laser Cutting Process: Analysis and Applications presents a comprehensive understanding of the laser cutting process and its practical applications. The book includes modeling, such as thermal and stress analysis, along with lamp parameter analysis for kerf width predictions and their practical applications, such as laser cutting of metallic and non-metallic materials and assessment of quality. The book provides analytical considerations for laser cutting, the importance of the affecting parameters, stress levels formed in the cutting section, cutting efficiency and cut morphology and metallurgy. It is designed to be used by individuals working in laser machining and high energy processing. - Fills the gap between a fundamental understanding of the laser cutting process and the shortcomings of the industrial (practical) applications - Discusses new developments in the laser cutting process of difficult to cut materials - Includes thermal analysis for various metallic and non-metallic materials - Provides information on Quality Assessment Methods</p>画面が切り替わりますので、しばらくお待ち下さい。
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【電子書籍なら、スマホ・パソコンの無料アプリで今すぐ読める!】
<p>The Laser Cutting Process: Analysis and Applications presents a comprehensive understanding of the laser cutting process and its practical applications. The book includes modeling, such as thermal and stress analysis, along with lamp parameter analysis for kerf width predictions and their practical applications, such as laser cutting of metallic and non-metallic materials and assessment of quality. The book provides analytical considerations for laser cutting, the importance of the affecting parameters, stress levels formed in the cutting section, cutting efficiency and cut morphology and metallurgy. It is designed to be used by individuals working in laser machining and high energy processing. - Fills the gap between a fundamental understanding of the laser cutting process and the shortcomings of the industrial (practical) applications - Discusses new developments in the laser cutting process of difficult to cut materials - Includes thermal analysis for various metallic and non-metallic materials - Provides information on Quality Assessment Methods</p>画面が切り替わりますので、しばらくお待ち下さい。
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【電子書籍なら、スマホ・パソコンの無料アプリで今すぐ読める!】<p>Mid-Infrared Fibre Photonics: Glass Materials, Fibre Fabrication and Processing, Laser Sources and Devicess combines the latest glass chemistry, fibre fabrication and post processing techniques to provide a comprehensive reference on the fundamental science and latest research in fibre photonics for the mid-infrared range. The book systematically reviews the key glass materials systems including fluorides, chalcogenides, and oxides. Each materials chapter includes discussion of composition, structure, thermal, optical and mechanical properties, extrinsic and intrinsic loss mechanisms, materials preparation and purification techniques. Then Mid-Infrared Fibre Photonics: Glass Materials, Fibre Fabrication and Processing, Laser Sources and Devicess covers the most relevant fabrication, post-processing, and spectroscopy techniques. Fibre sources are also addressed including fibre sources for continuous wave emission, pulsed emission, and broadband emission. The book concludes with a brief overview of important medical, sensing and defence applications. - Systematic coverage of the most relevant materials for mid-infrared fibre photonics including discussion of composition, structure, thermal, optical and mechanical properties, loss mechanisms, materials preparation and purification techniques - Reviews the key fabrication and processing techniques of mid-infrared fibre technologies - Addresses the important medical, sensing and defence applications</p>画面が切り替わりますので、しばらくお待ち下さい。
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<p>Mid-Infrared Fibre Photonics: Glass Materials, Fibre Fabrication and Processing, Laser Sources and Devicess combines the latest glass chemistry, fibre fabrication and post processing techniques to provide a comprehensive reference on the fundamental science and latest research in fibre photonics for the mid-infrared range. The book systematically reviews the key glass materials systems including fluorides, chalcogenides, and oxides. Each materials chapter includes discussion of composition, structure, thermal, optical and mechanical properties, extrinsic and intrinsic loss mechanisms, materials preparation and purification techniques. Then Mid-Infrared Fibre Photonics: Glass Materials, Fibre Fabrication and Processing, Laser Sources and Devicess covers the most relevant fabrication, post-processing, and spectroscopy techniques. Fibre sources are also addressed including fibre sources for continuous wave emission, pulsed emission, and broadband emission. The book concludes with a brief overview of important medical, sensing and defence applications. - Systematic coverage of the most relevant materials for mid-infrared fibre photonics including discussion of composition, structure, thermal, optical and mechanical properties, loss mechanisms, materials preparation and purification techniques - Reviews the key fabrication and processing techniques of mid-infrared fibre technologies - Addresses the important medical, sensing and defence applications</p>画面が切り替わりますので、しばらくお待ち下さい。
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【電子書籍なら、スマホ・パソコンの無料アプリで今すぐ読める!】<p>Successfully expand the use of lasers in your dental practice! With vibrant, detailed clinical images and easy-to-follow writing, Principles and Practice of Laser Dentistry, 3rd Edition walks you through the most common uses of lasers in areas such as periodontal surgery, dental implants, prosthetic and cosmetic reconstruction and describes how lasers work, how they interact with tissues, and how this knowledge may be applied to dental practice with a focus on technology, surgical techniques, and key steps in treatment. Written by laser dentistry pioneer Dr. Robert A. Convissar and a team of leading experts, this edition includes an ebook free with each purchase of a print book, three new chapters, and new case histories and clinical tips. It contains everything you need to know to build your skills in the rapidly growing field of laser dentistry. - Authoritative information is written by experts from all areas of dentistry, including periodontics, orthodontics, prosthodontics, oral and maxillofacial surgery, implants, endodontics, pediatric dentistry, cosmetic dentistry, and practice management. - Revised case studies reflect treatment planning and the use of lasers in treating a variety of pathologies. - Detailed photographs clearly illustrate preoperative, intraoperative, and postoperative procedures. - Guidelines to the use of lasers in procedures are validated with evidence-based, peer-reviewed literature. - Revised Clinical Tips and Caution boxes highlight key information. - Summary tables and boxes simplify essential information. - Chapter on Introducing Lasers into the Dental Practice includes guidelines for investing in lasers. - Glossary provides definitions of key laser terminology. - NEW! Chapters cover snoring and sleep apnea, photodynamic therapy, and infant tongue tie procedures. - NEW! More clinical photos, equipment photos, and conceptual illustrations are included. - NEW! eBook version is included with print purchase, allowing you to access all the text, figures, and references, with the ability to search, customize your content, make notes and highlights, and have content read aloud.</p>画面が切り替わりますので、しばらくお待ち下さい。
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<p>Successfully expand the use of lasers in your dental practice! With vibrant, detailed clinical images and easy-to-follow writing, Principles and Practice of Laser Dentistry, 3rd Edition walks you through the most common uses of lasers in areas such as periodontal surgery, dental implants, prosthetic and cosmetic reconstruction and describes how lasers work, how they interact with tissues, and how this knowledge may be applied to dental practice with a focus on technology, surgical techniques, and key steps in treatment. Written by laser dentistry pioneer Dr. Robert A. Convissar and a team of leading experts, this edition includes an ebook free with each purchase of a print book, three new chapters, and new case histories and clinical tips. It contains everything you need to know to build your skills in the rapidly growing field of laser dentistry. - Authoritative information is written by experts from all areas of dentistry, including periodontics, orthodontics, prosthodontics, oral and maxillofacial surgery, implants, endodontics, pediatric dentistry, cosmetic dentistry, and practice management. - Revised case studies reflect treatment planning and the use of lasers in treating a variety of pathologies. - Detailed photographs clearly illustrate preoperative, intraoperative, and postoperative procedures. - Guidelines to the use of lasers in procedures are validated with evidence-based, peer-reviewed literature. - Revised Clinical Tips and Caution boxes highlight key information. - Summary tables and boxes simplify essential information. - Chapter on Introducing Lasers into the Dental Practice includes guidelines for investing in lasers. - Glossary provides definitions of key laser terminology. - NEW! Chapters cover snoring and sleep apnea, photodynamic therapy, and infant tongue tie procedures. - NEW! More clinical photos, equipment photos, and conceptual illustrations are included. - NEW! eBook version is included with print purchase, allowing you to access all the text, figures, and references, with the ability to search, customize your content, make notes and highlights, and have content read aloud.</p>画面が切り替わりますので、しばらくお待ち下さい。
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【電子書籍なら、スマホ・パソコンの無料アプリで今すぐ読める!】<p><strong>LASER-ASSISTED MACHINING</strong></p> <p><strong>This unique book develops exhaustive engineering perceptions of different laser-assisted techniques, reviews the engineering context of different laser fabrication techniques, and describes the application of laser-assisted fabrication techniques.</strong></p> <p>Lasers are essential in the area of material processing because they can produce coherent beams with little divergence. The fabrication process known as surface cladding includes joining (soldering, welding), material removal (laser-aided drilling, cutting, etc.), deformation (extrusion, bending), and material addition. Some remarkable advantages of laser-assisted material development include faster processing rates and preservation of essential alloying components. However, the lack of widespread understanding of various material phenomena and how laser parameters affect them prevents the technology from being widely accepted on an industrial scale.</p> <p>Among the subjects <em>Laser-Assisted Machining</em> covers include high-powered lasers in material processing applications, laser-based joining of metallic and non-metallic materials, direct laser cladding, laser surface processing, laser micro and nano processing, emerging laser materials processing techniques, solid-state lasers, laser cutting, drilling and piercing, laser welding, laser bending or forming, laser cleaning, laser automation and in-process sensing, femtosecond laser micromachining, laser-assisted micro-milling/grinding, laser-assisted jet electrochemical micro-machining, laser-assisted water jet micro-machining, hybrid laser-electrochemical micromachining process, quill and nonreciprocal ultrafast laser writing, laser surface engineering, ultrashort pulsed laser surface texturing, laser interference patterning systems, laser interference lithography, laser-guided discharge texturing.</p> <p><strong>Audience</strong></p> <p>The book will be used by researchers in the fields of manufacturing technology and materials science as well as engineers and high-level technicians for a better understanding of various innovative and novel techniques to cope with the need of micromachining, as well as microfabrication industries for successful implementation of microproduct manufacturing.</p>画面が切り替わりますので、しばらくお待ち下さい。
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<p><strong>LASER-ASSISTED MACHINING</strong></p> <p><strong>This unique book develops exhaustive engineering perceptions of different laser-assisted techniques, reviews the engineering context of different laser fabrication techniques, and describes the application of laser-assisted fabrication techniques.</strong></p> <p>Lasers are essential in the area of material processing because they can produce coherent beams with little divergence. The fabrication process known as surface cladding includes joining (soldering, welding), material removal (laser-aided drilling, cutting, etc.), deformation (extrusion, bending), and material addition. Some remarkable advantages of laser-assisted material development include faster processing rates and preservation of essential alloying components. However, the lack of widespread understanding of various material phenomena and how laser parameters affect them prevents the technology from being widely accepted on an industrial scale.</p> <p>Among the subjects <em>Laser-Assisted Machining</em> covers include high-powered lasers in material processing applications, laser-based joining of metallic and non-metallic materials, direct laser cladding, laser surface processing, laser micro and nano processing, emerging laser materials processing techniques, solid-state lasers, laser cutting, drilling and piercing, laser welding, laser bending or forming, laser cleaning, laser automation and in-process sensing, femtosecond laser micromachining, laser-assisted micro-milling/grinding, laser-assisted jet electrochemical micro-machining, laser-assisted water jet micro-machining, hybrid laser-electrochemical micromachining process, quill and nonreciprocal ultrafast laser writing, laser surface engineering, ultrashort pulsed laser surface texturing, laser interference patterning systems, laser interference lithography, laser-guided discharge texturing.</p> <p><strong>Audience</strong></p> <p>The book will be used by researchers in the fields of manufacturing technology and materials science as well as engineers and high-level technicians for a better understanding of various innovative and novel techniques to cope with the need of micromachining, as well as microfabrication industries for successful implementation of microproduct manufacturing.</p>画面が切り替わりますので、しばらくお待ち下さい。
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【電子書籍なら、スマホ・パソコンの無料アプリで今すぐ読める!】<p>The dance along the artery The circulation on the lymph Are figured in the drift of stars. T. S. Eliot Die Methode ist alles. Carl Ludwig In physiology a spirit of finesse is required. Claude Bernard Armed with modern Doppler instrumentation, scientists can now quantify the red blood cell's "dance along the artery" as well as "the drift of stars. " In disciplines of science and medicine ranging from cardiology to astronomy, the Doppler principle now provides invaluable velo city measurements in the microcosm of capillary beds and in the cosmos. The newest appiication of the ubiquitous Doppler principle, laser-Doppler velocimetry, has been used to measure blood ftow in tissue for just a few years, but we perceived that, like most new techniques, the birth of laser-Doppler blood ftowmetry was not easy, nor was it likely to pass through infancy and reach maturity without difficulty. In physiology and medicine, better techniques for measur ing blood ftow are constantly in demand, but they often exhibit an unfortun ate boom-and-bust cyde: widespread acceptance and uncritical use are soon xiii xiv Preface followed by studies delineating the limits of the method's validity. The technique is then abandoned for the next more fashionable one, thus proving Ludwig's dictum that a given method is everything or nothing depending upon whether one can believe the data it yields.</p>画面が切り替わりますので、しばらくお待ち下さい。
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【電子書籍なら、スマホ・パソコンの無料アプリで今すぐ読める!】
<p>The dance along the artery The circulation on the lymph Are figured in the drift of stars. T. S. Eliot Die Methode ist alles. Carl Ludwig In physiology a spirit of finesse is required. Claude Bernard Armed with modern Doppler instrumentation, scientists can now quantify the red blood cell's "dance along the artery" as well as "the drift of stars. " In disciplines of science and medicine ranging from cardiology to astronomy, the Doppler principle now provides invaluable velo city measurements in the microcosm of capillary beds and in the cosmos. The newest appiication of the ubiquitous Doppler principle, laser-Doppler velocimetry, has been used to measure blood ftow in tissue for just a few years, but we perceived that, like most new techniques, the birth of laser-Doppler blood ftowmetry was not easy, nor was it likely to pass through infancy and reach maturity without difficulty. In physiology and medicine, better techniques for measur ing blood ftow are constantly in demand, but they often exhibit an unfortun ate boom-and-bust cyde: widespread acceptance and uncritical use are soon xiii xiv Preface followed by studies delineating the limits of the method's validity. The technique is then abandoned for the next more fashionable one, thus proving Ludwig's dictum that a given method is everything or nothing depending upon whether one can believe the data it yields.</p>画面が切り替わりますので、しばらくお待ち下さい。
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【電子書籍なら、スマホ・パソコンの無料アプリで今すぐ読める!】<p>This book is concerned primarily with operative endoscopy utilizing lasers, presenting proved and future endoscopic applications of lasers in medicine. It includes new concepts of cancer therapy, such as photodynamic therapy, because of the laser's endoscopic application.</p>画面が切り替わりますので、しばらくお待ち下さい。
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<p>This book is concerned primarily with operative endoscopy utilizing lasers, presenting proved and future endoscopic applications of lasers in medicine. It includes new concepts of cancer therapy, such as photodynamic therapy, because of the laser's endoscopic application.</p>画面が切り替わりますので、しばらくお待ち下さい。
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【電子書籍なら、スマホ・パソコンの無料アプリで今すぐ読める!】<p>The laser power handling capacities of optical systems are determined by the physical properties of their component materials. At low intensity levels these factors are not important, but an understanding of damage mechanisms is fundamental to good design of laser products operating at high power. Laser Induced Damage of Optical Materials presents</p>画面が切り替わりますので、しばらくお待ち下さい。
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<p>The laser power handling capacities of optical systems are determined by the physical properties of their component materials. At low intensity levels these factors are not important, but an understanding of damage mechanisms is fundamental to good design of laser products operating at high power. Laser Induced Damage of Optical Materials presents</p>画面が切り替わりますので、しばらくお待ち下さい。
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【電子書籍なら、スマホ・パソコンの無料アプリで今すぐ読める!】<p>LASIK is a timely and authoritative source for refractive, corneal, and cataract surgeons; ophthalmologists; optometrists; ophthalmic surgeons; and upper-level undergraduate, graduate, and medical students in these disciplines. This guide emphasizes the latest tools and step-by-step procedures to increase the safety, predictability, and long-term s</p>画面が切り替わりますので、しばらくお待ち下さい。
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<p>LASIK is a timely and authoritative source for refractive, corneal, and cataract surgeons; ophthalmologists; optometrists; ophthalmic surgeons; and upper-level undergraduate, graduate, and medical students in these disciplines. This guide emphasizes the latest tools and step-by-step procedures to increase the safety, predictability, and long-term s</p>画面が切り替わりますので、しばらくお待ち下さい。
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