论文标题

谐振器辅助单分子量子态检测

Resonator-assisted single molecule quantum state detection

论文作者

Zhu, Ming, Wei, Yan-Cheng, Hung, Chen-Lung

论文摘要

我们提出了一种对状态敏感的方案,通过强耦合到高Q窃窃私语模式高Q谐振器,以光学地检测无封闭过渡的单个分子。可以通过在光子总线波导中检测分子诱导的透明度来获得无背景信号,该光子波导与谐振器密切耦合,并通过协同参数参数$ c $抑制了其他分子状态的降低速率。我们使用Lindblad Master方程来数值计算分子谐振器耦合系统的动力学,并通过在弱驾驶状态下的准恒星状态的进化来开发分析解决方案。以RB $ _2 $ _2 $三重态基线分子为例,我们表明可以使用现实的谐振参数来实现高保真状态读数。我们进一步讨论了多个分子共同耦合与谐振因子的情况,证明了近乎统一的忠诚度和可忽略不计的人口损失。

We propose a state-sensitive scheme to optically detect a single molecule without a closed transition, through strong coupling to a high-Q whispering-gallery mode high-Q resonator. A background-free signal can be obtained by detecting a molecule-induced transparency in a photon bus waveguide that is critically coupled to the resonator, with a suppressed depumping rate to other molecular states by the cooperativity parameter $C$. We numerically calculate the dynamics of the molecule-resonator coupled system using Lindblad master equations, and develop analytical solutions through the evolution of quasi-steady states in the weak-driving regime. Using Rb$_2$ triplet ground state molecules as an example, we show that high fidelity state readout can be achieved using realistic resonator parameters. We further discuss the case of multiple molecules collectively coupled to a resonator, demonstrating near-unity detection fidelity and negligible population loss.

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