首页> 外文期刊>Optik: Zeitschrift fur Licht- und Elektronenoptik: = Journal for Light-and Electronoptic >Photon statistics of radiation emitted by two quantum wells embedded in two optically coupled semiconductor microcavities
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Photon statistics of radiation emitted by two quantum wells embedded in two optically coupled semiconductor microcavities

机译:两个量子孔嵌入两个光学耦合的半导体微腔中的两种量子阱发出的辐射的光子统计

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摘要

We study theoretically the photon statistics of the field emitted from two optically coupled semiconductor microcavities each containing a quantum well. The emission is determined by the interplay between exciton-photon coupling in each quantum well and internal interaction between the two optically coupled microcavities. A high degree of coherent control and tunability via the quantum well-cavity coupling strength and photon tunneling over the photon statistics of the transmitted field can be achieved. We demonstrate that the optical property of radiation emitted by one quantum well can be controlled by the properties of the second quantum well. This result has the potential to be used in quantum information processing. We show that the exciton-photon coupling influences the polariton resonances in the intensity spectrum of the transmitted field. The results obtained in this investigation has the potential to be used for designing efficient controllable all-optical switch and high sensitive optical sensor.
机译:从理论上研究了从含有量子阱的两个光学耦合的半导体微腔中发射的场的光子统计。发射由每个量子阱中的激子 - 光子耦合与两个光学耦合微腔之间的内部相互作用之间的相互作用决定。可以实现高度的通过量子阱腔耦合强度和光子隧穿在传递场的光子统计上的高度相干控制和可调谐性。我们证明可以通过第二量子阱的性质来控制由一个量子阱发出的辐射的光学性质。该结果具有在量子信息处理中使用的可能性。我们表明激子 - 光子耦合影响了透射场的强度谱中的Polariton共振。本研究中获得的结果具有用于设计有效可控的全光开关和高敏感光学传感器的可能性。

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