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Model of the optical emission of a driven semiconductor quantum dot: Phonon-enhanced coherent scattering and off-resonant sideband narrowing

机译:驱动半导体量子点的光发射模型:声子增强相干散射和非共振边带变窄

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摘要

We study the crucial role played by the solid-state environment in determining the photon emission characteristics of a driven quantum dot. For resonant driving, we predict a phonon enhancement of the coherently emitted radiation field with increasing driving strength, in stark contrast to the conventional expectation of a rapidly decreasing fraction of coherent emission with stronger driving. This surprising behavior results from thermalization of the dot with respect to the phonon bath and leads to a nonstandard regime of resonance fluorescence in which significant coherent scattering and the Mollow triplet coexist. Off resonance, we show that despite the phonon influence, narrowing of dot spectral sideband widths can occur in certain regimes, consistent with an experimental trend. © 2013 American Physical Society.
机译:我们研究了固态环境在确定驱动量子点的光子发射特性中所起的关键作用。对于共振驱动,我们预测随着驱动强度的增加,相干发射辐射场的声子会增强,这与传统的期望:随着驱动力的增强,相干发射的比例会迅速降低。这种令人惊讶的行为是由于点相对于声子浴的热化而导致的,并导致了共振荧光的非标准方案,其中显着的相干散射和莫洛尔三重态共存。在非共振状态下,我们表明,尽管受到声子的影响,在某些情况下仍可能出现点谱边带宽度变窄的现象,这与实验趋势一致。 ©2013美国物理学会。

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