论文标题

混合光谐振腔系统中的多通道量子抑制和相敏的调制

Multi-channel quantum noise suppression and phase-sensitive modulation in a hybrid optical resonant cavity system

论文作者

Di, Ke, Tan, Shuai, Wang, Liyong, Cheng, Anyu, Wang, Xi, Sun, Yuming, Guo, Junqi, Liu, Yu, Du, Jiajia

论文摘要

理论上研究了混合谐振腔体系统中真空和挤压场中连续变量的量子噪声抑制和相敏的调制。在量子噪声波动曲线中观察到类似于电磁感应透明度(EIT)的多个黑暗窗口。泵送光对量子噪声的抑制和控制的影响仔细分析了深色窗户的宽度,并获得了非线性晶体转换的泵送光的饱和点。我们发现噪声抑制效果对泵送光功率非常敏感。当泵送光功率为6.5 beta_th时,噪声抑制程度最高可达13.9 dB。此外,还展示了相敏感的调制方案,这很好地填补了多通道量子噪声抑制在挤压场的正交振幅上很难实现的空白。我们的结果对于精确的测量物理学,量子信息处理和芯片上系统的量子通信方面具有有意义。

Quantum noise suppression and phase-sensitive modulation of continuously variable in vacuum and squeezed fields in a hybrid resonant cavity system are investigated theoretically. Multiple dark windows similar to electromagnetic induction transparency (EIT) are observed in quantum noise fluctuation curve. The effects of pumping light on both suppression of quantum noise and control the widths of dark windows are carefully analyzed, and the saturation point of pumping light for nonlinear crystal conversion is obtained. We find that the noise suppression effect is strongly sensitive to the pumping light power. The degree of noise suppression can be up to 13.9 dB when the pumping light power is 6.5 Beta_th. Moreover, a phase-sensitive modulation scheme is demonstrated, which well fills the gap that multi-channel quantum noise suppression is difficult to realize at the quadrature amplitude of squeezed field. Our result is meaningful for various applications in precise measurement physics, quantum information processing and quantum communications of system-on-a-chip.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源