Laser-based measurements for time and frequency domain applications : a handbook
著者
書誌事項
Laser-based measurements for time and frequency domain applications : a handbook
(Series in optics and optoelectronics)
CRC Press, Taylor & Francis Group, c2013
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注記
Includes bibliographical references and index
内容説明・目次
内容説明
Foreword by Nobel laureate Professor Theodor W. Hansch of Ludwig-Maximilians-Universitat Munchen
Based on the authors' experimental work over the last 25 years, Laser-Based Measurements for Time and Frequency Domain Applications: A Handbook presents basic concepts, state-of-the-art applications, and future trends in optical, atomic, and molecular physics. It provides all the background information on the main kinds of laser sources and techniques, offers a detailed account of the most recent results obtained for time- and frequency-domain applications of lasers, and develops the theoretical framework necessary for understanding the experimental applications.
After a historical introduction, the book describes the basic concepts and mathematical tools required for studying the physics of oscillators. It then discusses microwave and optical resonators, crucial aspects of operation and fundamental properties of lasers, and precision spectroscopy and absolute frequency metrology. It also focuses on microwave and optical frequency standards and explores current and potential research directions.
Accessible to scientists, postdoc researchers, and advanced undergraduate students, this self-contained book gives a wide-ranging, balanced overview of the areas-including frequency standards and clocks, ultra-high-precision spectroscopy, quantum information, and environmental metrology-revolutionized by the recent advent of optical frequency comb synthesizers (OFCSs) based on femtosecond mode-locked lasers. The book is also a useful guide to cutting-edge research for manufacturers of advanced laser systems and optical devices.
目次
Shedding Light on the Art of Timekeeping. Characterization and Control of Harmonic Oscillators. Passive Resonators. Continuous-Wave Coherent Radiation Sources. High-Resolution Spectroscopic Frequency Measurements. Time and Frequency Measurements with Pulsed Laser Systems. Frequency Standards. Future Trends in Fundamental Physics and Applications. Bibliography.
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