Li Zhen, Lu Wang-Jun, Zuo Yun-Lan
Department of Physics, Shaoyang University, Shaoyang, 422099, China.
Department of Physics, Zhejiang Institute of Modern Physics, Zhejiang University, Hangzhou, 310027, China.
Sci Rep. 2024 Jun 10;14(1):13331. doi: 10.1038/s41598-024-64206-1.
We theoretically investigate the model of a quadratically coupled optomechanical system with a Newtonian gravitational potential in the weak-driving regime, where the optical cavity is driven by an external laser. The steady state of the whole system is treated in the framework of a few-photon subspace. We find that the conventional single-photon blockade, nonstandard types of single-photon blockade, two-photon blockade, and photon-induced tunneling can be induced by gravity when the quadratic optomechanical coupling strength remains constant. Moreover, we find that gravitational potential energy can compensate for the lack of quadratic optomechanical coupling for observation photon blockade. In particular, the photon stream with super-Poissonian distribution can be converted into a sub-Poissonian, antibunching photon stream by changing the driving detuning when the gravitational potential energy is included. These results show that the gravity has potential for realizing the manipulation of photon blockade in a quadratically coupled optomechanical system.
我们从理论上研究了在弱驱动 regime 下具有牛顿引力势的二次耦合光机械系统的模型,其中光学腔由外部激光驱动。整个系统的稳态在少光子子空间的框架内进行处理。我们发现,当二次光机械耦合强度保持恒定时,重力可以诱导传统的单光子阻塞、非标准类型的单光子阻塞、双光子阻塞和光子诱导隧穿。此外,我们发现引力势能可以弥补观察光子阻塞时二次光机械耦合的不足。特别是,当包含引力势能时,通过改变驱动失谐,可以将具有超泊松分布的光子流转换为亚泊松、反聚束光子流。这些结果表明,引力在二次耦合光机械系统中具有实现光子阻塞操纵的潜力。