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High-order harmonics generation in p...
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Ganeev, Rashid A.
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High-order harmonics generation in plasmas = resonance processes, quasi-phase-matching, and nanostructures /
Record Type:
Electronic resources : Monograph/item
Title/Author:
High-order harmonics generation in plasmas/ by Rashid A. Ganeev.
Reminder of title:
resonance processes, quasi-phase-matching, and nanostructures /
Author:
Ganeev, Rashid A.
Published:
Cham :Springer International Publishing : : 2022.,
Description:
xxxvii, 271 p. :ill., digital ;24 cm.
[NT 15003449]:
Introduction -- Lowest-order harmonics generation nonlinearities of laser-induced plasmas -- Different aspects of high-order harmonics generation in plasmas -- High-order harmonic generation in plasmas using high-pulse repetition rate lasers -- Applications of clusters and quantum dots for HHG in LIPs -- HHG using carbon-contained nanoparticles -- HHG in metal nanoparticles -- Two-color pump of laser-induced plasmas -- Resonance-induced enhancement of single harmonic -- Quasi-phase-matching in laser-induced plasmas -- Summary.
Contained By:
Springer Nature eBook
Subject:
Plasma spectroscopy. -
Online resource:
https://doi.org/10.1007/978-3-031-09040-0
ISBN:
9783031090400
High-order harmonics generation in plasmas = resonance processes, quasi-phase-matching, and nanostructures /
Ganeev, Rashid A.
High-order harmonics generation in plasmas
resonance processes, quasi-phase-matching, and nanostructures /[electronic resource] :by Rashid A. Ganeev. - Cham :Springer International Publishing :2022. - xxxvii, 271 p. :ill., digital ;24 cm. - Springer series on atomic, optical, and plasma physics,v. 1222197-6791 ;. - Springer series on atomic, optical, and plasma physics ;v. 122..
Introduction -- Lowest-order harmonics generation nonlinearities of laser-induced plasmas -- Different aspects of high-order harmonics generation in plasmas -- High-order harmonic generation in plasmas using high-pulse repetition rate lasers -- Applications of clusters and quantum dots for HHG in LIPs -- HHG using carbon-contained nanoparticles -- HHG in metal nanoparticles -- Two-color pump of laser-induced plasmas -- Resonance-induced enhancement of single harmonic -- Quasi-phase-matching in laser-induced plasmas -- Summary.
This book comprises a detailed consideration of novel approaches developed in the field of frequency conversion of laser sources in laser-induced plasmas during the last few years. The aim of the book is to support researchers and other readers in their development in the area of high-order nonlinear spectroscopy. Particularly, the advanced studies of nanoparticles and quantum dots for the formation of new sources of radiation in different short-wavelength spectral ranges show the ways to further implement the specific features of small-sized species in a relatively new field of study-laser ablation induced high-order harmonics generation spectroscopy. Researchers involved in the development of new methods of frequency conversion will benefit from finding the most recent advances in this field. Undergraduate students will discover interesting information about recent findings in plasma harmonic research. Additionally, the usefulness of the book will be demonstrated by the potential applications of the new knowledge developed during recent years for ultrafast pulse generation using the proposed schemes of plasma-light interaction. Thus, the audience may also include those researchers involved in state-of-the-art developments in attophysics. Additionally, any professionals interested in the application of the advanced techniques for material science will also benefit from updating their knowledge of new methods of material studies using high-order nonlinear spectroscopy.
ISBN: 9783031090400
Standard No.: 10.1007/978-3-031-09040-0doiSubjects--Topical Terms:
887348
Plasma spectroscopy.
LC Class. No.: QC718.5.S6 / G35 2022
Dewey Class. No.: 530.44
High-order harmonics generation in plasmas = resonance processes, quasi-phase-matching, and nanostructures /
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resonance processes, quasi-phase-matching, and nanostructures /
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Introduction -- Lowest-order harmonics generation nonlinearities of laser-induced plasmas -- Different aspects of high-order harmonics generation in plasmas -- High-order harmonic generation in plasmas using high-pulse repetition rate lasers -- Applications of clusters and quantum dots for HHG in LIPs -- HHG using carbon-contained nanoparticles -- HHG in metal nanoparticles -- Two-color pump of laser-induced plasmas -- Resonance-induced enhancement of single harmonic -- Quasi-phase-matching in laser-induced plasmas -- Summary.
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This book comprises a detailed consideration of novel approaches developed in the field of frequency conversion of laser sources in laser-induced plasmas during the last few years. The aim of the book is to support researchers and other readers in their development in the area of high-order nonlinear spectroscopy. Particularly, the advanced studies of nanoparticles and quantum dots for the formation of new sources of radiation in different short-wavelength spectral ranges show the ways to further implement the specific features of small-sized species in a relatively new field of study-laser ablation induced high-order harmonics generation spectroscopy. Researchers involved in the development of new methods of frequency conversion will benefit from finding the most recent advances in this field. Undergraduate students will discover interesting information about recent findings in plasma harmonic research. Additionally, the usefulness of the book will be demonstrated by the potential applications of the new knowledge developed during recent years for ultrafast pulse generation using the proposed schemes of plasma-light interaction. Thus, the audience may also include those researchers involved in state-of-the-art developments in attophysics. Additionally, any professionals interested in the application of the advanced techniques for material science will also benefit from updating their knowledge of new methods of material studies using high-order nonlinear spectroscopy.
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Physics and Astronomy (SpringerNature-11651)
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電子資源
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EB QC718.5.S6 G35 2022
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