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首页> 外文期刊>Physica status solidi >First-order Spatial Coherence Of Indirect Excitons In Coupled Quantum Wells
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First-order Spatial Coherence Of Indirect Excitons In Coupled Quantum Wells

机译:耦合量子阱中间接激子的一阶空间相干性

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We discuss a k_‖-filtering effect for the optical coherence function of indirect excitons in coupled quantum wells. In far-field optical experiments the light collected from the low-energy excitons inside the radiative zone produces interference patterns due to the very small difference between their momenta. This small fraction of the exciton distribution is further reduced due to the angular aperture of the experimental apparatus which corresponds to a maximum wavevector and results in a damped oscillatory behavior of the coherence function.rnCalculation of the optical coherence function above the phase transition temperature yields a coherence length consistent with the experiments, in contrast to the actual coherence length of indirect excitons which is smaller by an order of magnitude. The k_‖-filtering effect can naturally explain the recently observed large coherence lengths without the assumption of a condensed or super-fluid phase.
机译:我们讨论了耦合量子阱中间接激子的光学相干函数的k _“-滤波效应。在远场光学实验中,从辐射区内的低能激子收集的光会产生干涉图,这是因为它们的动量之间存在很小的差异。由于实验设备的角孔径对应于最大波矢,因此激子分布的这一小部分进一步减小,导致相干函数的阻尼振荡行为.rn在相变温度以上计算光学相干函数得出a与实验相符的相干长度与间接激子的实际相干长度相比要小一个数量级。 k_'滤波效应自然可以解释最近观察到的大相干长度,而无需假设存在冷凝相或超流体相。

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