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首页> 外文期刊>Journal of Physics. Condensed Matter >Nonlinear transmission and reflection of ultrashort laser pulses by a thin semiconductor film under two-photon generation of biexcitons
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Nonlinear transmission and reflection of ultrashort laser pulses by a thin semiconductor film under two-photon generation of biexcitons

机译:双激子双光子产生下半导体薄膜对超短激光脉冲的非线性传输和反射

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摘要

The transmission and reflection of an ultrashort laser pulse by a thin semiconductor film under the conditions of resonance excitation of biexcitons by two photons are theoretically investigated. The numerical solutions of the macroscopic equations are found for various values of the film thickness, the detuning from the two-photon resonance, the laser pulse duration, and the intensity. These equations have been obtained in the framework of the generalized bipolariton model. In this model a biexciton is formed from virtual excitons of four kinds and only some of them interact with the light. It is shown that the thin film substantially transforms the incident pulse. For specific conditions, high and narrow transmission and reflection peaks can appear, or even trains of such peaks. In some cases their height can considerably exceed the amplitude of the incident pulse. The results are compared with similar results obtained on the basis of other models.
机译:理论上研究了在双激子被两个光子共振激发的条件下半导体薄膜对超短激光脉冲的传输和反射。对于膜厚度的各种值,双光子共振的失谐,激光脉冲持续时间和强度,找到了宏观方程的数值解。这些方程式已在广义双极化模型的框架内获得。在此模型中,双激子是由四种虚拟激子形成的,只有其中的一部分与光相互作用。示出了薄膜基本上使入射脉冲变形。对于特定条件,可能会出现高而窄的透射和反射峰,甚至出现一系列这样的峰。在某些情况下,它们的高度可能大大超过入射脉冲的幅度。将结果与在其他模型的基础上获得的相似结果进行比较。

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