Single photon superradiant decay of cyclotron resonance in a p-type single-crystal semiconductor film with a cubic structure
arXiv:1612.09525 · doi:10.1103/PhysRevB.96.075208
Abstract
We study a single-photon super-radiance under the conditions of cyclotron resonance in a perfect single-crystal p-type semiconductor film with cubic structure. We show that the rate of super-radiant emission scales with tjhe film area. which allows one to specify the size of the film at which the probability of a single-photon super-radiance becomes much greater than the probabilities of other scattering channels. The power of super-radiant emission depends only on three fundamental constants: the electron charge q_{e}, the speed of light c, the electron mass m_{e}, and on the electric- to magnetic field ratio.
7 pages, 29 references, 3 figures. In this version in Sec. 5 the angular distribution of a superradiant emission was added
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