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Unconventional motional narrowing in the optical spectrum of a semiconductor quantum dot

机译:半导体量子点光谱中的非常规运动变窄

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'Motional narrowing' refers to the striking phenomenon where the resonance line of a system coupled to a reservoir becomes narrower on increasing the reservoir fluctuation. A textbook example is found in nuclear magnetic resonance, where the fluctuating local magnetic fields created by randomly oriented nuclear spins are averaged when the motion of the nuclei is thermally activated. The existence of a motional-narrowing effect in the optical response of semiconductor quantum dots remains so far unexplored. This effect may be important in this instance because the decoherence dynamics is a central issue for the implementation of quantum information processing based on quantum dots. Here we report on the experimental evidence of motional narrowing in the optical spectrum of a semiconductor quantum dot broadened by the spectral-diffusion phenomenon. Surprisingly, motional narrowing is achieved when decreasing incident power or temperature, in contrast with the standard phenomenology observed for nuclear magnetic resonance.
机译:“运动变窄”是指这样的打击现象,即与储层耦合的系统的共振线随着储层波动的增加而变窄。在核磁共振中发现了一个教科书示例,其中,当热激活核运动时,对由随机取向的核自旋产生的波动的局部磁场求平均。迄今为止,尚未探索半导体量子点的光学响应中是否存在缩小运动的效应。在这种情况下,这种影响可能很重要,因为退相干动力学是实现基于量子点的量子信息处理的核心问题。在这里,我们报告了通过光谱扩散现象变宽的半导体量子点在光谱中运动变窄的实验证据。出乎意料的是,与观察到的核磁共振标准现象相反,当降低入射功率或温度时,实现了运动变窄。

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