Jiang Cheng, Cui Yuanshun, Chen Guibin
School of Physics and Electronic Electrical Engineering, Huaiyin Normal University, 111 West Chang Jiang Road, Huaian 223300, China.
Jiangsu Key Laboratory of Modern Measurement Technology and Intelligent Systems, Huaiyin Normal University, 111 West Chang Jiang Road, Huaian 223300, China.
Sci Rep. 2016 Oct 18;6:35583. doi: 10.1038/srep35583.
We explore theoretically the dynamics of an optomechanical system in which a resonantly driven cavity mode is quadratically coupled to the displacement of a mechanical resonator. Considering the first order correction to adiabatic elimination, we obtain the analytical expression of optomechanical damping rate which is negative and depends on the position of the mechanical resonator. After comparing the numerical results between the full simulation of Langevin equations, adiabatic elimination, and first order correction to adiabatic elimination, we explain the dynamics of the system in terms of overall mechanical potential and optomechanical damping rate. The antidamping induced by radiation pressure can result in self-sustained oscillation of the mechanical resonator. Finally, we discuss the time evolution of the intracavity photon number, which also shows that the effect of first order correction cannot be neglected when the ratio of the cavity decay rate to the mechanical resonance frequency becomes smaller than a critical value.
我们从理论上探究了一个光机械系统的动力学,其中一个共振驱动的腔模与一个机械谐振器的位移二次耦合。考虑到绝热消除的一阶修正,我们得到了光机械阻尼率的解析表达式,该表达式为负且取决于机械谐振器的位置。在比较了朗之万方程的全模拟、绝热消除以及绝热消除的一阶修正之间的数值结果后,我们根据整体机械势和光机械阻尼率来解释系统的动力学。辐射压力引起的反阻尼可导致机械谐振器的自持振荡。最后,我们讨论了腔内光子数的时间演化,这也表明当腔衰减率与机械共振频率之比小于一个临界值时,一阶修正的影响不可忽略。