论文标题

量子冰箱由非经典光驱动

Quantum refrigerator driven by nonclassical light

论文作者

Cao, Hui-Jing, Li, Fu, Li, Sheng-Wen

论文摘要

我们研究由通用光态,甚至是非古典的驱动的三级量子冰箱。借助P功能膨胀驱动光,我们获得了不同类型的光态产生的热电流。事实证明,所有不同的输入光态为该冰箱提供相同的性能系数,而冷却功率不仅取决于光强度,还取决于驱动光的特定光子统计。与具有相同强度的相干光相比,具有超级(子) - 贫困光子统计的驱动灯可能会提高较小(更强的)冷却能力。我们发现这是因为束光子首先会激发系统,但随后迅速诱导刺激的发射,这将冰箱恢复到冷却过程的起始状态,从而减少了冷却电流的生成。该机制通过输入光的高阶连贯性提供了一种更精致的控制方法。

We study a three-level quantum refrigerator which is driven by a generic light state, even a nonclassical one. With the help of P function expansion of the driving light, we obtain the heat current generated by different types of light states. It turns out all different input light states give the same coefficient of performance for this refrigerator, while the cooling power depend not only on the light intensity but also the specific photon statistics of the driving light. Comparing with the coherent light with the same intensity, the driving light with super(sub)-Poissonian photon statistics could raise a smaller (stronger) cooling power. We find that this is because the bunching photons would first excite the system but then successively induce the stimulated emission, which draws the refrigerator back to the starting state of the cooling process and thus decreases the cooling current generation. This mechanism provides a more delicate control method via the high order coherence of the input light.

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