论文标题

通过将量子耦合到旋转谐振器,工程学诱导透明度诱导透明度

Engineering Optomechanically Induced Transparency by coupling a qubit to a spinning resonator

论文作者

Burns, Jessica, Root, Owen, Jing, Hui, Mirza, Imran M.

论文摘要

从理论上讲,我们研究了泵探针驱动的杂化式旋转光力环谐振器的光谱特性,并与两级量子发射器(QE或QE或QE)光学耦合。最近,我们已经显示[ARXIV:1810.03709],在没有发射极的情况下,该设置的耦合腔版本不仅能够非偏置光传播,而且还可以表现出慢速和快速的光传播。在这项工作中,我们研究了旋转光力谐振器的光窃窃图库模式的单个量化宽松的存在如何改变探针光非股发性。在弱兴奋的假设和平均场近似值下,我们发现旋转/旋转的Sagnac效应与量子耦合之间的相互作用可以导致在验光诱导的透明度(omit)峰值(omit)峰值和由于Qubit the频率窗口宽度的宽度范围内的增强,这是由于打开了Qubit-Bit Bitbit后添加反省量的宽度窗口。但是,与无问题的情况相比,我们注意到这样的增强是出于将探针光传输量的延迟降低1/2的成本,而顺时针旋转方向则降低了1/2倍。这些结果的目标应用可以在量子电路的区域以及QES是关键组件的非重生量子通信方案中。

We theoretically study the spectral properties of a pump-probe driven hybrid spinning optomechanical ring resonator optically coupled with a two-level quantum emitter (QE or qubit). Recently we have shown [arXiv:1810.03709] that in the absence of the emitter the coupled cavity version of this setup is not only capable of nonreciprocal light propagation but can also exhibit slow & fast light propagation. In this work, we investigate in what ways the presence of a single QE coupled with the optical whispering gallery modes of the spinning optomechanical resonator can alter the probe light nonreciprocity. Under the weak-excitation assumption and mean-field approximation, we find that the interplay between the rotational/spinning Sagnac-effect and the qubit coupling can lead to the enhancement both in the optomechanically induced transparency (OMIT) peak value and in the width of the transparency window due to the opening of qubit-assisted back reflection channel. However, compared to the no-qubit case, we notice that such an enhancement comes at the cost of degrading the group delay in probe light transmission by a factor of 1/2 for clockwise rotary directions. The target applications of these results can be in the areas of quantum circuitry and in non-reciprocal quantum communication protocols where QEs are a key component.

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