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首页> 外文期刊>Physical Review, B. Condensed Matter >Effects of intervalence band coherences on the coherently coupled heavy-hole-light-hole Stark shift in semiconductor quantum wells - art. no. 245325
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Effects of intervalence band coherences on the coherently coupled heavy-hole-light-hole Stark shift in semiconductor quantum wells - art. no. 245325

机译:间隔带相干对半导体量子阱中相干耦合的重孔-光孔Stark位移的影响-艺术没有。 245325

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摘要

A theoretical study of the coherently coupled heavy-hole-light-hole optical Stark effect in semiconductor quantum wells is presented. Based on a detailed investigation of the various many-body contributions to the Stark shifts, we identify a parameter regime in which the existence of intervalence band coherences (analogous to the nonradiative Raman coherence in three-level atoms) can be inferred from the coherently coupled heavy-hole-light-hole excitonic optical Stark shift. The analysis is performed for the third-order nonlinear optical regime (chi(3) regime), and is based on the dynamics-controlled truncation (DCT) formalism. It includes the relevant optical selection rules, excitonic and two-exciton-correlation (e.g., biexcitonic) effects. [References: 42]
机译:对半导体量子阱中相干耦合的重孔-光孔光学斯塔克效应进行了理论研究。基于对Stark位移的各种多体贡献的详细研究,我们确定了一个参数体系,在该体系中可以从相干耦合推断出能带相干的存在(类似于三能级原子的非辐射拉曼相干)。重孔-轻孔激子光学斯塔克频移。分析是针对三阶非线性光学方案(chi(3)方案)进行的,并且基于动力学控制的截断(DCT)形式主义。它包括相关的光学选择规则,激子和两激子相关(例如,双激子)效应。 [参考:42]

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