论文标题

$λ$ -Type的三级系统的量子光学制度中的深色状态和损失引起的现象

Dark-state and loss-induced phenomena in the quantum-optical regime of $Λ$-type three-level systems

论文作者

Rose, H., Popolitova, D. V., Tikhonova, O. V., Meier, T., Sharapova, P. R.

论文摘要

物质与量子光的相互作用会导致现象,而这种现象无法通过半经典方法来解释。特别令人感兴趣的是具有广泛的光子数分布的状态,允许具有高阶Fock状态的过程。在这里,我们分析了一个具有三个电子水平的Jaynes-Cummings-type模型,该模型被量子光激发。作为量子光,我们考虑连贯和挤压状态。在我们的模拟中,我们包括几种损失机制,即在实际系统中相关的散发,腔和辐射损失。我们证明,损失使一个人可以控制电子水平的人群,并可能引起连贯的种群捕获,并导致量子场之间光子统计数据的重新分布,甚至导致光子统计数据从一个磁场转移到另一个场。此外,我们介绍和分析了一种新数量,量子极化,并证明了与经典极化相比其基本差异。使用量子极化和第三级种群,我们研究了在存在量子光的情况下电磁诱导的透明度,并为挤压光的情况显示了其特殊特征。最后,在存在不同类型的损失的情况下研究和分析场之间的量子相关性。

The interaction of matter with quantum light leads to phenomena which cannot be explained by semiclassical approaches. Of particular interest are states with broad photon number distributions which allow processes with high-order Fock states. Here, we analyze a Jaynes-Cummings-type model with three electronic levels which is excited by quantum light. As quantum light we consider coherent and squeezed states. In our simulations we include several loss mechanisms, namely, dephasing, cavity, and radiative losses which are relevant in real systems. We demonstrate that losses allow one to control the population of electronic levels and may induce coherent population trapping, as well as lead to a redistribution of the photon statistics among the quantum fields and even to a transfer of the photon statistics from one field to another. Moreover, we introduce and analyze a novel quantity, the quantum polarization, and demonstrate its fundamental difference compared to the classical polarization. Using the quantum polarization and the third level population, we investigate electromagnetically induced transparency in the presence of quantum light and show its special features for the case of squeezed light. Finally, quantum correlations between fields are studied and analyzed in the presence of different types of losses.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源