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June 15, 1982Physical review. B, Condensed matter398 citations

Collective excitations in semiconductor superlattices

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SSS. Das SarmaJQJ. J. Quinn

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Abstract

Electronic collective modes of a system of large numbers of equally spaced, parallel two-dimensional electron layers are discussed within a self-consistent-field approach. Plasmon dispersion relations for the finite system as well as for the infinite periodic system are obtained. It is shown that the optical-plasmon frequency of the periodic system goes into the known two- or three-dimensional limit, respectively, depending on whether qa1 or qa1, where q is the wave number in the two-dimensional plane and a is the layer spacing. Effect of a uniform static external magnetic field oriented normal to the two-dimensional layers, on the collective-mode spectrum, is discussed with the use of the self-consistent-field and hydrodynamic approximations. It is shown that magnetoplasmons, helicon, and Alfv\'en waves can all exist in such a periodic system under suitable conditions. The theory is generalized to a system where the alternate layers are electrons and holes. The relevance of these results to semiconductor superlattice systems (both types I and II) is pointed out.

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Cite This Study

Sarma et al. (1982) studied this question.

synapsesocial.com/papers/6a12a38849a1b84031a40746https://doi.org/10.1103/physrevb.25.7603
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