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Single-photon superradiant decay of cyclotron resonance in a p-type single-crystal semiconductor film with cubic structure

机译:具有立方结构的P型单晶半导体膜中回旋谐振的单光子超大衰减

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摘要

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 the 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 me, and on the electric-to magnetic-field ratio.
机译:我们在具有立方结构的完美单晶P型半导体膜中的回旋谐振条件下研究单光子超细。 我们表明,具有薄膜区域的超辐射发射秤的速率,其允许人们指定单光子超细的概率远大于其他散射通道的概率的薄膜的尺寸。 超辐射发射的功率仅取决于三个基本常数:电子电荷Q(E),光速C,电子质量ME,以及电磁场比。

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