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Elements Of Photoionization Quantum Dynamics Methods Lampros A A Nikolopoulos

  • SKU: BELL-38032218
Elements Of Photoionization Quantum Dynamics Methods Lampros A A Nikolopoulos
$ 31.00 $ 45.00 (-31%)

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Elements Of Photoionization Quantum Dynamics Methods Lampros A A Nikolopoulos instant download after payment.

Publisher: IOP Publishing
File Extension: PDF
File size: 9.21 MB
Pages: 194
Author: Lampros A. A. Nikolopoulos
ISBN: 9781643276533, 1643276530
Language: English
Year: 2019

Product desciption

Elements Of Photoionization Quantum Dynamics Methods Lampros A A Nikolopoulos by Lampros A. A. Nikolopoulos 9781643276533, 1643276530 instant download after payment.

The dynamics of quantum systems exposed to ultrafast (at the femtosecond time-scale) and strong laser radiation has a highly non-linear character, leading to a number of new phenomena, outside the reach of traditional spectroscopy. The current laser technology makes feasible the probing and control of quantum-scale systems with fields that are as strong as the interatomic Coulombic interactions and time resolution that is equal to (or less than) typical atomic evolution times. It is indispensable that any theoretical description of the induced physical processes should rely on the accurate calculation of the atomic structure and a realistic model of the laser radiation as pulsed fields. This book aims to provide an elementary introduction of theoretical and computational methods and by no means is anywhere near to complete. The selection of the topics as well as the particular viewpoint is best suited for early-stage students and researchers; the included material belongs in the mainstream of theoretical approaches albeit using simpler language without sacrificing mathematical accuracy. Therefore, subjects such as the Hilbert vector-state, density-matrix operators, amplitude equations, Liouville equation, coherent laser radiation, free-electron laser, Dyson-chronological operator, subspace projection, perturbation theory, stochastic density-matrix equations, time-dependent Schrödinger equation, partial-wave analysis, spherical-harmonics expansions, basis and grid wavefunction expansions, ionization, electron kinetic-energy and angular distributions are presented within the context of laser-atom quantum dynamics.

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