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      Non-perturbative QED Model with Dressed States to Tackle HHG in Ultrashort Intense Laser Pulses

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          Abstract

          A generalization of non-perturbative QED model for high harmonic generation is developed for the multi-mode optical field case. By introducing classical-field-dressed quantized Volkov states analytically, a formula to calculate HHG for hydrogen-like atom in ultrashort intense laser pulse is obtained, which has a simple intuitive interpretation. The dressed state QED model indicates a new perspective to understand HHG, for example, the presence of the weak even-order harmonic photons, which has been verified by both theoretical analysis and numerical computation. Long wavelength approximation and strong field approximation are involved in the development of the formalism.

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          Author and article information

          Journal
          2008-01-08
          Article
          10.1103/PhysRevA.78.063826
          0801.1194
          74ac590c-13d8-450b-9390-da01077d95dc
          History
          Custom metadata
          4 pages, 2 figures
          physics.atom-ph

          Atomic & Molecular physics
          Atomic & Molecular physics

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