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Above-threshold ionization photoelectron spectrum from quantum trajectory
Authors:X. Y. Lai   Q. Y. Cai  M. S. Zhan
Affiliation:(1) State Key Laboratory of Magnetic Resonances and Atomic and Molecular Physics, Wuhan Institute of Physics and Mathematics, The Chinese Academy of Sciences, Wuhan, 430071, P.R. China;(2) Graduation University of Chinese Academy of Sciences, Beijing, 100081, P.R. China;(3) Center for Cold Atom Physics, The Chinese Academy of Sciences, Wuhan, 430071, P.R. China
Abstract:Many nonlinear quantum phenomena of intense laser-atom physics can be intuitively explained with the concept of trajectory. In this paper, Bohmian mechanics (BM) is introduced to study a multiphoton process of atoms interacting with the intense laser field: above-threshold ionization (ATI). Quantum trajectory of an atomic electron in intense laser field is obtained from the Bohm-Newton equation first and then the energy of the photoelectron is gained from its trajectory. With energies of an ensemble of photoelectrons, we obtain the ATI spectrum which is consistent with the previous theoretical and experimental results. Comparing BM with the classical trajectory Monte-Carlo method, we conclude that quantum potential may play a key role to reproduce the spectrum of ATI. Our work may present a new approach to understanding quantum phenomena in intense laser-atom physics with the image of trajectory.
Keywords:  KeywordHeading"  >PACS 03.65.Ta Foundations of quantum mechanics  42.50.Hz Multiphoton processes
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