论文标题

光学量子互连的参数放大

Parametric Amplification of an Optomechanical Quantum Interconnect

论文作者

Chen, Huo, Vives, Marti, Metcalf, Mekena

论文摘要

将超导码位连接到光纤需要将微波光子转换为光学光子。现代实验示范表现出微波谐振器与通过机械振荡器中语音模式介导的光腔之间的强耦合。该范式转导实验是由理论效率界定的,并且在电磁谐振器上持续驱动幅度。通过将参数驱动器添加到微波谐振器和光腔中,我们发现通过量子传感器转换的信号会放大,同时保持较低的添加噪声水平。我们提出了一个理论框架,以基于量子光学的输入输出形式对驱动激光器进行时间依赖性控制,并在分析求解转导效率并增加噪声时,当对照信号发出参数驱动系统时。我们的结果表明,与当前转导实验相关的不同参数状态中的不同转导效率和较低的噪声。

Connecting superconducting qubits to optical fiber necessitates the conversion of microwave photons to optical photons. Modern experimental demonstrations exhibit strong coupling between a microwave resonator and an optical cavity mediated through phononic modes in a mechanical oscillator. This paradigmatic transduction experiment is bounded by a theoretical efficiency with constant driving amplitudes on the electromagnetic resonators. By adding a parametric drive to the microwave resonator and optical cavity we discover the converted signal through the quantum transducer is amplified, while maintaining a lower level of the added noise. We propose a theoretical framework for time-dependent control of the driving lasers based on the input-output formalism of quantum optics, and solve analytically the transduction efficiency and added noise when the control signals parametrically drive the system. Our results show better transduction efficiency and lower added noise in varying parameter regimes relevant to current transduction experiments.

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