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  • Access by Xinjiang University

Slow Electrons in a Polar Crystal

R. P. Feynman

  • California Institute of Technology, Pasadena, California

Phys. Rev. 97, 660 – Published 1 February, 1955

DOI: https://doi.org/10.1103/PhysRev.97.660

Abstract

A variational principle is developed for the lowest energy of a system described by a path integral. It is applied to the problem of the interaction of an electron with a polarizable lattice, as idealized by Fröhlich. The motion of the electron, after the phonons of the lattice field are eliminated, is described as a path integral. The variational method applied to this gives an energy for all values of the coupling constant. It is at least as accurate as previously known results. The effective mass of the electron is also calculated, but the accuracy here is difficult to judge.

References (7)

  1. H. Fröhlich, Advances in Physics 3, 325 (1954)
  2. R. P. Feynman, Phys. Rev. 80, 440 (1950)
  3. M. Gurari, Phil. Mag. 44, 329 (1953)
  4. T. Lee and D. Pines, Phys. Rev. 88, 960 (1952) Lee, Low, and Pines, 90, 297 (1953)
  5. R. P. Feynman, Phys. Rev. 84, 108 (1951)
  6. T. Lee and D. Pines, Phys. Rev. 92, 883 (1953)
  7. E. Haga, Progr. Theoret. Phys. (Japan) 11, 449 (1954)

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