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Atoms in intense laser fields /

"The development of lasers capable of producing high-intensity pulses has opened a new area in the study of light-matter interactions. The corresponding laser fields are strong enough to compete with the Coulomb forces in controlling the dynamics of atomic systems and give rise to multiphoton p...

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Detalles Bibliográficos
Clasificación:Libro Electrónico
Autor principal: Joachain, C. J. (Charles Jean)
Otros Autores: Kylstra, N. J., Potvliege, R. M.
Formato: Electrónico eBook
Idioma:Inglés
Publicado: Cambridge ; New York : Cambridge University Press, 2011.
Temas:
Acceso en línea:Texto completo

MARC

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100 1 |a Joachain, C. J.  |q (Charles Jean)  |1 https://id.oclc.org/worldcat/entity/E39PBJtH48hVJ3qQP9wTd4VwG3 
245 1 0 |a Atoms in intense laser fields /  |c C.J. Joachain, N.J. Kylstra, and R.M. Potvliege. 
260 |a Cambridge ;  |a New York :  |b Cambridge University Press,  |c 2011. 
300 |a 1 online resource (xii, 568 pages) :  |b illustrations 
336 |a text  |b txt  |2 rdacontent 
337 |a computer  |b c  |2 rdamedia 
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520 |a "The development of lasers capable of producing high-intensity pulses has opened a new area in the study of light-matter interactions. The corresponding laser fields are strong enough to compete with the Coulomb forces in controlling the dynamics of atomic systems and give rise to multiphoton processes. This book presents a unified account of this rapidly developing field of physics. The first part describes the fundamental phenomena occurring in intense laser-atom interactions and gives the basic theoretical framework to analyze them. The second part contains a detailed discussion of Floquet theory, the numerical integration of the wave equations and approximation methods for the low- and high-frequency regimes. In the third part, the main multiphoton processes are discussed: multiphoton ionization, high harmonic and attosecond pulse generation, and laser-assisted electron-atom collisions. Aimed at graduate students in atomic, molecular and optical physics, the book will also interest researchers working on laser interactions with matter"--  |c Provided by publisher 
504 |a Includes bibliographical references and index. 
505 0 |a Part I. Basic Concepts: 1. High-intensity laser-atom physics; 2. Theory of laser-atom interactions -- Part II. Theoretical Methods: 3. Perturbation theory; 4. Floquet theory; 5. Numerical integration of the wave equations; 6. The low-frequency regime; 7. The high-frequency regime -- Part III. Multiphoton Atomic Physics: 8. Multiphoton ionization; 9. Harmonic generation and attosecond pulses; 10. Laser-assisted electron-atom collisions. 
588 0 |a Print version record. 
590 |a Knovel  |b ACADEMIC - Optics & Photonics 
590 |a ProQuest Ebook Central  |b Ebook Central Academic Complete 
590 |a eBooks on EBSCOhost  |b EBSCO eBook Subscription Academic Collection - Worldwide 
650 0 |a Electron-atom collisions. 
650 0 |a Floquet theory. 
650 0 |a Laser pulses, Ultrashort. 
650 0 |a Multiphoton processes. 
650 0 |a Multiphoton ionization. 
650 4 |a Electrical engineering. 
650 4 |a Engineering. 
650 6 |a Collisions électron-atome. 
650 6 |a Théorie de Floquet. 
650 6 |a Impulsions laser ultra-brèves. 
650 6 |a Processus à plusieurs photons. 
650 6 |a Ionisation multiphotonique. 
650 7 |a SCIENCE  |x Molecular Physics.  |2 bisacsh 
650 7 |a SCIENCE  |x Physics  |x Nuclear.  |2 bisacsh 
650 7 |a Electron-atom collisions  |2 fast 
650 7 |a Floquet theory  |2 fast 
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650 7 |a Multiphoton processes  |2 fast 
700 1 |a Kylstra, N. J. 
700 1 |a Potvliege, R. M. 
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776 0 8 |i Print version:  |a Joachain, C.J. (Charles Jean).  |t Atoms in intense laser fields.  |d Cambridge ; New York : Cambridge University Press, 2011  |z 9780521793018  |w (DLC) 2011024273  |w (OCoLC)727702130 
856 4 0 |u https://ebookcentral.uam.elogim.com/lib/uam-ebooks/detail.action?docID=807164  |z Texto completo 
880 8 |6 505-00/(S  |a 6.4.2 Classical electron trajectories -- 6.4.3 Extensions of the theory -- 6.5 Recollision ionization -- 6.6 Non-dipole effects -- References -- 7 The high-frequency regime -- 7.1 High-frequency Floquet theory -- 7.2 Structure of atomic hydrogen in intense, high-frequency laser fields -- 7.2.1 The dressed potential classification of states -- 7.2.2 Small-α0 limit -- 7.2.3 Large-α0 limit -- 7.3 Atomic stabilization -- 7.3.1 Adiabatic stabilization -- 7.3.2 Time-dependent studies of stabilization -- 7.3.3 Experimental results -- 7.3.4 Breakdown of stabilization -- References -- Part III: Multiphoton atomic physics -- 8 Multiphoton ionization -- 8.1 Multiphoton single ionization -- 8.2 Multiphoton double ionization -- 8.2.1 One-photon, double ionization of helium -- 8.2.2 Multiphoton double ionization of atoms -- References -- 9 Harmonic generation and attosecond pulses -- 9.1 Experiments -- 9.2 Calculations -- 9.2.1 Single-atom response -- 9.2.1.1 Basic equations -- 9.2.1.2 Perturbative calculations -- 9.2.1.3 Non-perturbative calculations -- 9.2.2 Propagation in the medium -- 9.3 Properties of harmonics and applications -- 9.3.1 Conversion efficiency -- 9.3.2 Coherence -- 9.3.3 Harmonic chirp -- 9.3.4 Other properties -- 9.3.5 Applications of harmonics -- 9.4 Attosecond pulses -- 9.4.1 Attosecond pulse trains -- 9.4.2 Single attosecond pulses -- 9.4.3 Applications of attosecond pulses: attophysics -- References -- 10 Laser-assisted electron-atom collisions -- 10.1 Experiments -- 10.2 Laser-assisted potential scattering -- 10.2.1 Basic theory -- 10.2.2 Born series -- 10.2.3 First Born approximation -- 10.2.4 Low-frequency approximation -- 10.2.5 High-frequency approximation -- 10.2.6 Laser-assisted Coulomb scattering of electrons -- 10.3 Laser-assisted collisions of electrons with real atoms. 
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