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Photodetection probability in quantum systems with arbitrarily strong light-matter interaction

机译:具有任意强光物质相互作用的量子系统中的光检测概率

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摘要

Cavity-QED systems have recently reached a regime where the light-matter interaction strength amounts to a non-negligible fraction of the resonance frequencies of the bare subsystems. In this regime, it is known that the usual normal-order correlation functions for the cavity-photon operators fail to describe both the rate and the statistics of emitted photons. Following Glauber’s original approach, we derive a simple and general quantum theory of photodetection, valid for arbitrary light-matter interaction strengths. Our derivation uses Fermi’s golden rule, together with an expansion of system operators in the eigenbasis of the interacting light-matter system, to arrive at the correct photodetection probabilities. We consider both narrow- and wide-band photodetectors. Our description is also valid for point-like detectors placed inside the optical cavity. As an application, we propose a gedanken experiment confirming the virtual nature of the bare excitations that enrich the ground state of the quantum Rabi model.
机译:腔QED系统最近达到了一种机制,其中光-物质的相互作用强度等于裸子系统的共振频率的不可忽略的分数。在这种情况下,众所周知,腔光子算子的常规正态相关函数无法同时描述发射光子的速率和统计。遵循格劳伯(Glauber)的原始方法,我们推导了一种简单而通用的光电检测量子理论,适用于任意的光-物质相互作用强度。我们的推导使用费米的黄金法则,并在相互作用的光物质系统的本征基础上扩展了系统运算符,以得出正确的光电检测概率。我们考虑窄带和宽带光电探测器。我们的描述对于放置在光学腔内的点状检测器也是有效的。作为一种应用,我们提出了一个gedanken实验,该实验证实了丰富量子Rabi模型基态的裸激发的虚拟性质。

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