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Dispersion, Complex Analysis and Optical Spectroscopy - Classical Theory (Paperback, Softcover reprint of the original 1st ed.... Dispersion, Complex Analysis and Optical Spectroscopy - Classical Theory (Paperback, Softcover reprint of the original 1st ed. 1999)
Kai-Erik Peiponen, Erik M. Vartiainen, Toshimitsu Asakura
R5,201 Discovery Miles 52 010 Ships in 10 - 15 working days

This book is devoted to dispersion theory in linear and nonlinear optics. Dispersion relations and methods of analysis in optical spectroscopy are derived with the aid of complex analysis. The book introduces the mathematical basis and derivations of various dispersion relations that are used in optical spectroscopy. In addition, it presents the dispersion theory of the nonlinear optical processes which are essential in modern optical spectroscopy. The book includes new methods such as the maximum entropy model for wavelength-dependent spectra analysis.

Kramers-Kronig Relations in Optical Materials Research (Paperback, Softcover reprint of hardcover 1st ed. 2005): Valerio... Kramers-Kronig Relations in Optical Materials Research (Paperback, Softcover reprint of hardcover 1st ed. 2005)
Valerio Lucarini, Jarkko J. Saarinen, Kai-Erik Peiponen, Erik M. Vartiainen
R4,702 Discovery Miles 47 020 Ships in 10 - 15 working days

TheKramers-Kronigrelationsconstitutethemathematicalformulationofthe fundamental connection between the in-phase to the out-of-phase response of a system to a sinusoidal time-varying external perturbation. Such connection exists in both classical and quantum physical systems and derives directly from the principle of causality. Apart from being of great importance in high energy physics, statistical physics, and acoustics, at present the Kramers-Kronig relations are basic and widely-accepted tools for the investigation of the linear optical properties of materials, since they allow performing the so-called inversion of optical data, i.e. acquiring knowledge on dispersive phenomena by measurements of absorptive phenomena over the whole energy spectrum or vice versa. Since the late '80s, a growing body of theoretical results as well as of experimental evidences has shown that the Kramers-Kronig relations can be adopted for e?ciently acquiring knowledge on nonlinear optical phenomena. These results suggest that the Kramers-Kronig relations may become in a near future standard techniques in the context of nonlinear spectroscopy. Thisbookisthe?rstcomprehensivetreatisedevotedtoprovidingauni- ing picture of the physical backgrounds, of the rigorous mathematical theory, and of the applications of the Kramers-Kronig relations in both ?elds of l- ear and nonlinear optical spectroscopy. Some basic programs written for the 1 MATLAB environment are also included. This book is organized as an argumentative discourse, progressing from the linear to the nonlinear phenomena, from the general to the speci?c s- tems, and from the theoretical to the experimental results.

Kramers-Kronig Relations in Optical Materials Research (Hardcover, 2005 ed.): Valerio Lucarini, Jarkko J. Saarinen, Kai-Erik... Kramers-Kronig Relations in Optical Materials Research (Hardcover, 2005 ed.)
Valerio Lucarini, Jarkko J. Saarinen, Kai-Erik Peiponen, Erik M. Vartiainen
R4,736 Discovery Miles 47 360 Ships in 10 - 15 working days

TheKramers-Kronigrelationsconstitutethemathematicalformulationofthe fundamental connection between the in-phase to the out-of-phase response of a system to a sinusoidal time-varying external perturbation. Such connection exists in both classical and quantum physical systems and derives directly from the principle of causality. Apart from being of great importance in high energy physics, statistical physics, and acoustics, at present the Kramers-Kronig relations are basic and widely-accepted tools for the investigation of the linear optical properties of materials, since they allow performing the so-called inversion of optical data, i.e. acquiring knowledge on dispersive phenomena by measurements of absorptive phenomena over the whole energy spectrum or vice versa. Since the late '80s, a growing body of theoretical results as well as of experimental evidences has shown that the Kramers-Kronig relations can be adopted for e?ciently acquiring knowledge on nonlinear optical phenomena. These results suggest that the Kramers-Kronig relations may become in a near future standard techniques in the context of nonlinear spectroscopy. Thisbookisthe?rstcomprehensivetreatisedevotedtoprovidingauni- ing picture of the physical backgrounds, of the rigorous mathematical theory, and of the applications of the Kramers-Kronig relations in both ?elds of l- ear and nonlinear optical spectroscopy. Some basic programs written for the 1 MATLAB environment are also included. This book is organized as an argumentative discourse, progressing from the linear to the nonlinear phenomena, from the general to the speci?c s- tems, and from the theoretical to the experimental results.

Dispersion, Complex Analysis and Optical Spectroscopy - Classical Theory (Hardcover, 1999 ed.): Kai-Erik Peiponen, Erik M.... Dispersion, Complex Analysis and Optical Spectroscopy - Classical Theory (Hardcover, 1999 ed.)
Kai-Erik Peiponen, Erik M. Vartiainen, Toshimitsu Asakura
R5,335 Discovery Miles 53 350 Ships in 10 - 15 working days

This book is devoted to dispersion theory in linear and nonlinear optics. Dispersion relations and methods of analysis in optical spectroscopy are derived with the aid of complex analysis. The book introduces the mathematical basis and derivations of various dispersion relations that are used in optical spectroscopy. In addition, it presents the dispersion theory of the nonlinear optical processes which are essential in modern optical spectroscopy. The book includes new methods such as the maximum entropy model for wavelength-dependent spectra analysis.

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