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Nonlinear Optical Crystals: A Complete Survey

Autor David N. Nikogosyan
en Limba Engleză Paperback – 17 oct 2010
Nonlinear optical techniques are now recognized as the most efficient means available to generate laser radiation at wavelengths that are presently inaccessible via conventional sources. This technology uses nonlinear optical crystals for the frequency conversion of laser light. The book contains the most complete and up to date reference material on properties of nonlinear optical crystals, describes their applications, both traditional and specific, and provides the main mathematical formulas necessary for the calculation of the frequency conversion process. It is a vital source of information for scientists and engineers dealing with modern applications of nonlinear optical crystals in quantum electronics, optoelectronics and laser physics.
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Specificații

ISBN-13: 9781441919571
ISBN-10: 1441919570
Pagini: 440
Ilustrații: XII, 428 p.
Dimensiuni: 155 x 235 x 23 mm
Greutate: 0.61 kg
Ediția:Softcover reprint of hardcover 1st ed. 2005
Editura: Springer
Colecția Springer
Locul publicării:New York, NY, United States

Public țintă

Research

Cuprins

Basic Nonlinear Optical Crystals.- Main Infrared Materials.- Often-Used Crystals.- Periodically Poled Crystals and “Wafer” Materials.- Newly Developed and Perspective Crystals.- Self-Frequency-Doubling Crystals.- Rarely Used and Archive Crystals.- Some Recent Applications.- Concluding Remarks.

Notă biografică

 
The author has more than 30 years experience in nonlinear optics, laser physics and quantum electronics. He has published more than 120 papers in peer-reviewed journals, 5 books and 7 book chapters. His first review on nonlinear optical crystals was published in 1977 (Sov.J.Quantum Electronics, vol.4, pp. 5-26) and the twenty years later selected as a MILESTONE publication (see SPIE Milestone Series, vol MS140, Selected Papers on Optical Parametric Oscillators and Amplifiers and Their Applications, ed. by J.H.Hunt, pp.191-203, 1997).

Textul de pe ultima copertă

Nonlinear optical crystals are widely used in modern optical science and technology for frequency conversion of laser light, i.e. to generate laser radiation at any specific wavelength in visible, UV or IR spectral regions.
This unrivalled reference book contains the most complete and up-to-date information on properties of nonlinear optical crystals. It includes:
* Database of 63 common and novel nonlinear optical crystals
* Periodically-poled and self-frequency-doubling materials
* Full description of linear and nonlinear optical properties
* Significant amount of crystallophysical, thermophysical, spectroscopic, electro-optic and magneto-optic information
* 7 mini-reviews on novel applications, such as deep-UV light generation, terahertz-wave generation, ultrashort laser pulse compression, photonic band-gap crystals, x3 nonlinearity, etc.
* More than 1500 different references with full titles
It is a vital source of information for scientists and engineers dealing with modern applications of nonlinear optical crystals in quantum electronics, photonics, optoelectronics and laser physics.
About the author:
Prof. David N. Nikogosyan, Ph.D., is an SFI (Science Foundation Ireland) Investigator in the Physics Department at University College Cork, Cork, Ireland. He has a 35-year scientific career in nonlinear optics, laser physics and quantum electronics. He has authored 133 peer-reviewed scientific publications, including 11 reviews and 8 books.

Caracteristici

Nonlinear Optical Crystals contains the most complete and up-to-date reference material on properties of nonlinear optical crystals including: Traditional and specific applications The mathematical formulas necessary for the calculation of the frequency conversion process A survey of 63 nonlinear optical crystals containing more than 1500 different references with full titles Recent applications of common and novel nonlinear materials, including quasi-phase matching Special consideration for periodically-poled and self-frequency-doubling materials Significant amount of crystallophysical, thermophysical, spectroscopic, electro-optic and magneto-optic information