Wei Yue, Wang Xiaojuan, Xiong Biao, Zhao Chengsong, Liu Jibing, Shan Chuanjia
Opt Express. 2021 Oct 25;29(22):35299-35313. doi: 10.1364/OE.440382.
Few-photon effects such as photon blockade and tunneling have potential applications in modern quantum technology. To enhance the few-photon effects in an optomechanical system, we introduce a coherent feedback loop to cavity mode theoretically. By studying the second-order correlation function, we show that the photon blockade effect can be improved with feedback. Under appropriate parameters, the photon blockade effect exists even when cavity decay rate is larger than the single-photon optomechanical coupling coefficient, which may reduce the difficulty of realizing single-photon source in experiments. Through further study of the third-order correlation function, we show that the tunneling effect can also be enhanced by feedback. In addition, we discuss the application of feedback on Schrödinger-cat state generation in an optomechanical system. The result shows that the fidelity of cat state generation can be improved in the presence of feedback loop.
诸如光子阻塞和隧穿等少光子效应在现代量子技术中具有潜在应用。为了增强光机械系统中的少光子效应,我们从理论上向腔模引入了一个相干反馈回路。通过研究二阶关联函数,我们表明反馈可以改善光子阻塞效应。在适当的参数下,即使腔衰减率大于单光子光机械耦合系数,光子阻塞效应也存在,这可能会降低实验中实现单光子源的难度。通过对三阶关联函数的进一步研究,我们表明反馈也可以增强隧穿效应。此外,我们讨论了反馈在光机械系统中薛定谔猫态生成方面的应用。结果表明,在存在反馈回路的情况下,猫态生成的保真度可以得到提高。