Effective Bloch equations for semiconductors

M. Lindberg and S. W. Koch
Phys. Rev. B 38, 3342 – Published 15 August 1988
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Abstract

Generalized Bloch equations for laser-excited semiconductors are derived applying quantum-mechanical projection-operator techniques. The equations include phase-space filling and the many-body Coulomb effects. The coherent part of the equations is evaluated for the regime of ultrafast-pump-probe excitation and shown to reduce to the inhomogeneously broadened two-level Bloch equations for the different momentum states if the proper Coulomb enhancement in the density of states is taken into account. For the high-excitation quasithermal regime a generalization of the Elliott formula for the absorption spectrum is derived which is valid not only for bulk semiconductors, but also for quantum-well structures and other systems with reduced spatial dimensions.

  • Received 25 February 1988

DOI:https://doi.org/10.1103/PhysRevB.38.3342

©1988 American Physical Society

Authors & Affiliations

M. Lindberg and S. W. Koch

  • Optical Sciences Center and Department of Physics, University of Arizona, Tucson, Arizona 85721

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Issue

Vol. 38, Iss. 5 — 15 August 1988

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