Dye Lasers

Dye Lasers

Author: F.P. Schäfer

Publisher: Springer Science & Business Media

Published: 2013-04-17

Total Pages: 298

ISBN-13: 3662115794

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VI spectrum of potential applications is outlined by T. W. HANSCH, who also touches briefly on the exciting field of laser spectroscopy, a most important application to which a forthcoming volume is devoted. The treatment, being tutorial in nature, is suitable both for graduate students and for scientists working in the dye-laser field or applying a dye laser in another research discipline. The book will also prove to be an indispensable and handy source of information for the specialist. The literature is reviewed up to spring 1973, and the list of additional references (which cites the titles of articles) extends to summer 1973. This is proof of an amazingly short publication period for a 300-page book. Heidelberg, October 1973 HELMUT K. V. LOTSCH Contents 1. Principles of Dye Laser Operation. By FRITZ P. SCHAFER (with 53 Figures) Historical . . . . . . . . . . . . . . . . 1 Organization of the Book . . . . . . . . . 5 1. 1. General Properties of Organic Compounds 6 1. 2. Light Absorption by Organic Dyes 9 1. 3. Deactivation Pathways for Excited Molecules 28 1. 4. Laser-Pumped Dye Lasers . . . . . . 32 1. 4. 1. Oscillation Condition . . . . . 32 1. 4. 2. Practical Pumping Arrangements 37 1. 4. 3. Time Behavior and Spectra 44 1. 5. Flashlamp-Pumped Dye Lasers 54 1. 5. 1. Triplet Influence . . . . 54 1. 5. 2. Practical Pumping Arrangements 60 1. 5. 3. Time Behavior and Spectra 64 1. 6. Wavelength-Selective Resonators for Dye Lasers 66 1. 7. Dye-Laser Amplifiers 79 1. 8. Outlook . . . . . . . . . . . . . . . . . 83 2. Continuous-Wave Dye Lasers. By B. B.


High Resolution Imaging in Microscopy and Ophthalmology

High Resolution Imaging in Microscopy and Ophthalmology

Author: Josef F. Bille

Publisher: Springer

Published: 2019-08-13

Total Pages: 407

ISBN-13: 3030166384

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This open access book provides a comprehensive overview of the application of the newest laser and microscope/ophthalmoscope technology in the field of high resolution imaging in microscopy and ophthalmology. Starting by describing High-Resolution 3D Light Microscopy with STED and RESOLFT, the book goes on to cover retinal and anterior segment imaging and image-guided treatment and also discusses the development of adaptive optics in vision science and ophthalmology. Using an interdisciplinary approach, the reader will learn about the latest developments and most up to date technology in the field and how these translate to a medical setting. High Resolution Imaging in Microscopy and Ophthalmology – New Frontiers in Biomedical Optics has been written by leading experts in the field and offers insights on engineering, biology, and medicine, thus being a valuable addition for scientists, engineers, and clinicians with technical and medical interest who would like to understand the equipment, the applications and the medical/biological background. Lastly, this book is dedicated to the memory of Dr. Gerhard Zinser, co-founder of Heidelberg Engineering GmbH, a scientist, a husband, a brother, a colleague, and a friend.


Three-Dimensional Microfabrication Using Two-Photon Polymerization

Three-Dimensional Microfabrication Using Two-Photon Polymerization

Author: Tommaso Baldacchini

Publisher: William Andrew

Published: 2019-10-31

Total Pages: 766

ISBN-13: 0128178280

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Three-Dimensional Microfabrication Using Two-Photon Polymerization, Second Edition offers a comprehensive guide to TPP microfabrication and a unified description of TPP microfabrication across disciplines. It offers in-depth discussion and analysis of all aspects of TPP, including the necessary background, pros and cons of TPP microfabrication, material selection, equipment, processes and characterization. Current and future applications are covered, along with case studies that illustrate the book's concepts. This new edition includes updated chapters on metrology, synthesis and the characterization of photoinitiators used in TPP, negative- and positive-tone photoresists, and nonlinear optical characterization of polymers. This is an important resource that will be useful for scientists involved in microfabrication, generation of micro- and nano-patterns and micromachining. Discusses the major types of nanomaterials used in the agriculture and forestry sectors, exploring how their properties make them effective for specific applications Explores the design, fabrication, characterization and applications of nanomaterials for new Agri-products Offers an overview of regulatory aspects regarding the use of nanomaterials for agriculture and forestry


Confocal and Two-Photon Microscopy

Confocal and Two-Photon Microscopy

Author: Alberto Diaspro

Publisher: John Wiley & Sons

Published: 2001-11-22

Total Pages: 600

ISBN-13: 0471409200

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Confocal and Two-Photon Microscopy Foundations, Applications, and Advances Edited by Alberto Diaspro Confocal and two-photon fluorescence microscopy has provided researchers with unique possibilities of three-dimensional imaging of biological cells and tissues and of other structures such as semiconductor integrated circuits. Confocal and Two-Photon Microscopy: Foundations, Applications, and Advances provides clear, comprehensive coverage of basic foundations, modern applications, and groundbreaking new research developments made in this important area of microscopy. Opening with a foreword by G. J. Brakenhoff, this reference gathers the work of an international group of renowned experts in chapters that are logically divided into balanced sections covering theory, techniques, applications, and advances, featuring: * In-depth discussion of applications for biology, medicine, physics, engineering, and chemistry, including industrial applications * Guidance on new and emerging imaging technology, developmental trends, and fluorescent molecules * Uniform organization and review-style presentation of chapters, with an introduction, historical overview, methodology, practical tips, applications, future directions, chapter summary, and bibliographical references * Companion FTP site with full-color photographs * The significant experience of pioneers, leaders, and emerging scientists in the field of confocal and two-photon excitation microscopy Confocal and Two-Photon Microscopy: Foundations, Applications, and Advances is invaluable to researchers in the biological sciences, tissue and cellular engineering, biophysics, bioengineering, physics of matter, and medicine, who use these techniques or are involved in developing new commercial instruments.


Laser Stimulated Scattering and Multiphoton Excitation

Laser Stimulated Scattering and Multiphoton Excitation

Author: Guang S. He

Publisher: Oxford University Press

Published: 2022-02-25

Total Pages: 640

ISBN-13: 0192649523

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Laser Stimulated Scattering and Multiphoton Excitation is the first book to comprehensively cover quantum electrodynamic theory of stimulated scattering and multiphoton excitation processes, as well as various stimulated scattering effects. These include stimulated Raman scattering (SRS) and stimulated Brillouin scattering (SBS), as well as more recent advances in the field such as stimulated Kerr scattering (SKS), stimulated Rayleigh-Bragg scattering (SRBS) and stimulated Mie scattering (SMS). The book goes on to discuss multiphoton excitation-based nonlinear optical effects, photoelectric effects, atomic and molecular ionization effects, and molecular dissociation effects. Each chapter includes a description of the key concepts and mechanisms alongside the necessary theoretical formulations, as well as engaging with the latest experimental research achievements and the scientific and technological applications. Laser Stimulated Scattering and Multiphoton Excitation is essential reading for academics, research scientists, and students working or interested in the areas of nonlinear optics, nonlinear photonics, laser spectroscopy, physical optics, physical chemistry, and optoelectronic engineering.


Handbook of Biomedical Nonlinear Optical Microscopy

Handbook of Biomedical Nonlinear Optical Microscopy

Author: Barry R. Masters

Publisher: Oxford University Press

Published: 2008-05-19

Total Pages: 895

ISBN-13: 0198036825

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The Handbook of Biomedical Nonlinear Optical Microscopy provides comprehensive treatment of the theories, techniques, and biomedical applications of nonlinear optics and microscopy for cell biologists, life scientists, biomedical engineers, and clinicians. The chapters are separated into basic and advanced sections, and provide both textual and graphical illustrations of all key concepts. The more basic sections are aimed at life scientists without advanced training in physics and mathematics, and tutorials are provided for the more challenging sections. The first part of the Handbook introduces the historical context of nonlinear microscopy. The second part presents the nonlinear optical theory of two- and multiphoton excited fluorescence (TPE, MPE) spectroscopy, second and third harmonic generation (SHG, THG) spectroscopy, and coherent anti-Stokes Raman spectroscopy (CARS). The third part introduces modern microscopic and spectroscopic instrumentation and techniques that are based on nonlinear optics. The fourth part provides key applications of nonlinear microscopy to the biomedical area: neurobiology, immunology, tumor biology, developmental biology, dermatology, and cellular metabolism. There are also chapters on nonlinear molecular probes, cellular damage, and nanoprocessing.


Beam Shaping and Control with Nonlinear Optics

Beam Shaping and Control with Nonlinear Optics

Author: F. Kajzar

Publisher: Springer Science & Business Media

Published: 2006-04-11

Total Pages: 479

ISBN-13: 0306470799

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The field of nonlinear optics, which has undergone a very rapid development since the discovery of lasers in the early sixties, continues to be an active and rapidly developing - search area. The interest is mainly due to the potential applications of nonlinear optics: - rectly in telecommunications for high rate data transmission, image processing and recognition or indirectly from the possibility of obtaining large wavelength range tuneable lasers for applications in industry, medicine, biology, data storage and retrieval, etc. New phenomena and materials continue to appear regularly, renewing the field. This has proven to be especially true over the last five years. New materials such as organics have been developed with very large second- and third-order nonlinear optical responses. Imp- tant developments in the areas of photorefractivity, all optical phenomena, frequency conv- sion and electro-optics have been observed. In parallel, a number of new phenomena have been reported, some of them challenging the previously held concepts. For example, solitons based on second-order nonlinearities have been observed in photorefractive materials and frequency doubling crystals, destroying the perception that third order nonlinearities are - quired for their generation and propagation. New ways of creating and manipulating nonl- ear optical materials have been developed. An example is the creation of highly nonlinear (second-order active) polymers by static electric field, photo-assisted or all-optical poling. Nonlinear optics involves, by definition, the product of electromagnetic fields. As a con- quence, it leads to the beam control.