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Coherent Sources of XUV Radiation: Soft X-Ray Lasers and High-Order Harmonic Generation: Springer Series in Optical Sciences, cartea 106

Autor Pierre Jaeglé
en Limba Engleză Hardback – 6 dec 2005
Extreme ultraviolet radiation, also referred to as soft X-rays or XUV, offers very special optical properties. The X-UV refractive index of matter is such that normal reflection cannot take place on polished surfaces whereas beam transmission through one micrometer of almost all materials reduces to zero. Therefore, it has long been a difficult task to imagine and to implement devices designed for complex optics experiments in this wavelength range. Thanks to new sources of coherent radiation - XUV-lasers and High Order Harmonics - the use of XUV radiation, for interferometry, holography, diffractive optics, non-linear radiation-matter interaction, time-resolved study of fast and ultrafast phenomena and many other applications, including medical sciences, is ubiquitous.
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Specificații

ISBN-13: 9780387230078
ISBN-10: 0387230076
Pagini: 416
Ilustrații: XIII, 416 p. 332 illus.
Dimensiuni: 155 x 235 x 25 mm
Greutate: 0.7 kg
Ediția:2006
Editura: Springer
Colecția Springer
Seria Springer Series in Optical Sciences

Locul publicării:New York, NY, United States

Public țintă

Research

Cuprins

to Coherent Extreme-Ultraviolet and Soft X-Ray Sources.- Short Survey of XUV Emission Mechanisms and Sources.- XUV Optics.- Coherent XUV Radiation Beams.- State of the Art and Prospect of X-Ray Lasers.- Beginnings.- General Features of X-Ray Lasers.- Propagation of XUV Laser Beams.- Saturated XUV Lasers.- Recombination Lasers.- Schemes for Future Soft X-Ray Lasers.- High Harmonic Generation.- Survey of the Theoretical Background.- General Characteristics of High-Order Harmonic Emission.- A Survey of Coherent XUV Sources Applications.- Time-Resolution About 100 Picoseconds.- Time-Resolution About One Picosecond.- Subfemtosecond Time-Resolution.- Future Prospects.

Textul de pe ultima copertă

Extreme ultraviolet radiation, also referred to as soft X-rays or XUV, offers very special optical properties. The X-UV refractive index of matter is such that normal reflection cannot take place on polished surfaces whereas beam transmission through one micrometer of almost all materials reduces to zero. Therefore, it has long been a difficult task to imagine and to implement devices designed for complex optics experiments in this wavelength range. Thanks to new sources of coherent radiation - XUV-lasers and High Order Harmonics - the use of XUV radiation, for interferometry, holography, diffractive optics, non-linear radiation-matter interaction, time-resolved study of fast and ultrafast phenomena and many other applications, including medical sciences, is ubiquitous.

Caracteristici

First monograph in this area Consistent book, covers both generations and applications