论文标题

通过光电机械系统,射频和光学光子之间的非偏置转换

Nonreciprocal conversion between radio-frequency and optical photons with an optoelectromechanical system

论文作者

Eshaqi-Sani, Najmeh, Zippilli, Stefano, Vitali, David

论文摘要

非互联网系统破坏时间反转对称是现代量子技术的重要工具,可抑制不必要的反射信号或通过检测端口进入的无关噪声。在这里,我们提出了一种方案,可以使用专门的光学机械和机电相互作用来实现光学和射频(RF)光子之间的非偏置转换。通过干扰通过两种通过两种不同的中间机械模式建立的两个电磁模式之间的透射途径干扰了非偏源传播。在我们的协议中,我们将双重驱动器应用于空腔模式,并将单色调驱动器应用于RF谐振器,并使用驱动音之间的相对相位来获得非交流。我们表明,从光学到RF,反之亦然,可以在两个方向上的大型合作性限制中获得完美的非交流转导。我们还研究了传感器噪声,并表明机械热噪声总是反射回孤立的端口。在较大的合作性的极限下,输入噪声是在允许方向上以不变的方式传输的;特别是,在光学到RF转换的情况下,输出RF端口中仅具有真空噪声。

Nonreciprocal systems breaking time-reversal symmetry are essential tools in modern quantum technologies enabling the suppression of unwanted reflected signals or extraneous noise entering through detection ports. Here we propose a scheme enabling nonreciprocal conversion between optical and radio-frequency (rf) photons using exclusively optomechanical and electromechanical interactions. The nonreciprocal transmission is obtained by interference of two dissipative pathways of transmission between the two electromagnetic modes established through two distinct intermediate mechanical modes. In our protocol, we apply a bichromatic drive to the cavity mode and a single-tone drive to the rf resonator, and use the relative phase between the drive tones to obtain nonreciprocity. We show that perfect nonreciprocal transduction can be obtained in the limit of large cooperativity in both directions, from optical to rf and vice versa. We also study the transducer noise and show that mechanical thermal noise is always reflected back onto the isolated port. In the limit of large cooperativity, the input noise is instead transmitted in an unaltered way in the allowed direction; in particular one has only vacuum noise in the output rf port in the case of optical-to-rf conversion.

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