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Quasienergy pseudopotential method in the theory of interaction of a coherent electromagnetic field with matter

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Abstract

We formulate the quasienergy pseudopotential methods, allowing us to study the behavior of the electronic structure of a material in a coherent electromagnetic field. We show that after canonical transformation, we can look for the solution to the nonsteady-state Schrödinger equation in a basis of wave functions from extended Hubert space, substituting the quasienergy pseudopotential for the true nonsteady-state electronic potential. We prove that the familiar compensation theorem remains valid even in this case.

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Translated from Izvestiya Vysshikh Uchebnykh Zavedenii, Fizika, No. 2, pp. 33–37, February, 1992.

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Makavchik, I.V., Simakov, V.I. & Demidenko, V.S. Quasienergy pseudopotential method in the theory of interaction of a coherent electromagnetic field with matter. Soviet Physics Journal 35, 126–129 (1992). https://doi.org/10.1007/BF00936863

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Keywords

  • Wave Function
  • Electromagnetic Field
  • Canonical Transformation
  • Pseudopotential Method
  • Electronic Potential