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RING-SHAPED SPATIAL PATTERN OF EXCITON LUMINESCENCE FORMED DUE TO THE HOT CARRIER TRANSPORT IN A LOCALLY PHOTOEXCITED ELECTRON-HOLE BILAYER

机译:局部光激发电子-空穴双层中热载流子传输形成的激子发光的环形空间图案

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摘要

A consistent explanation of the-formation of a ring-shaped pattern of exciton luminescence in GaAs/AlGaAs double quantum wells is suggested. The pattern consists of two concentric rings around the laser excitation spot. It is shown that the luminescence rings appear due to the in-layer transport of hot charge carriers at high photoexcitation intensity. Interestingly, one of two causes of this transport might involve self-organized criticality (SOC) that would be the first case of the SOC observation in semiconductor physics. We test this cause in a many-body numerical model by performing extensive molecular dynamics simulations. The results show good agreement with experiments. Moreover, the simulations have enabled us to identify the particular kinetic processes underlying the formation of each of these two luminescence rings.
机译:建议一致解释GaAs / AlGaAs双量子阱中激子发光的环形图案的形成。该图案由围绕激光激发点的两个同心环组成。结果表明,发光环是由于热载流子在高光激发强度下的层内传输而出现的。有趣的是,这种传输的两个原因之一可能涉及自组织临界(SOC),这将是半导体物理学中SOC观测的第一种情况。我们通过执行广泛的分子动力学模拟,在多体数值模型中测试此原因。结果表明与实验吻合良好。而且,模拟使我们能够识别出这两个发光环中的每一个的形成的特定动力学过程。

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