论文标题
通过随机电动力学解释的光学机电不对称性
Optomechanical sideband asymmetry explained by stochastic electrodynamics
论文作者
论文摘要
在随机电动力学的框架内,我们得出了从悬浮镜反射的激光束的噪声谱。电磁场遵循麦克斯韦的方程式,并由确定性部分描述,该确定性部分解释了激光场和一个随机部分,该部分解释了热和零点背景波动。类似,镜像运动满足了牛顿运动方程,并且由确定性和随机部分组成,类似于Langevin Equation。我们考虑了一个光电探测器,该光电探测器记录反射镜从镜像干扰频率转移的参考光束(异差干涉法)反射的场的功率。从理论上讲,我们表明光电探测器信号的功率频谱密度由四个部分组成:(i)带有节拍音符的确定术语,(ii)射击噪声,(iii)镜像运动的实际异差信号,(iv)(iv)由测量噪声和背部噪声和辐射压力射击噪声之间的相关性引起的交叉项。后者产生了用超电原子,腔光力学和悬浮的纳米颗粒观察到的拉曼边界不对称性。我们的经典理论完全再现了实验观察结果,并与量子理论处理获得的结果一致。
Within the framework of stochastic electrodynamics we derive the noise spectrum of a laser beam reflected from a suspended mirror. The electromagnetic field follows Maxwell's equations and is described by a deterministic part that accounts for the laser field and a stochastic part that accounts for thermal and zero-point background fluctuations.Likewise, the mirror motion satisfies Newton's equation of motion and is composed of deterministic and stochastic parts, similar to a Langevin equation. We consider a photodetector that records the power of the field reflected from the mirror interfering with a frequency-shifted reference beam (heterodyne interferometry). We theoretically show that the power spectral density of the photodetector signal is composed of four parts: (i) a deterministic term with beat notes, (ii) shot noise, (iii) the actual heterodyne signal of the mirror motion and (iv) a cross term resulting from the correlation between measurement noise (shot noise) and backaction noise (radiation pressure shot noise). The latter gives rise to the Raman sideband asymmetry observed with ultracold atoms, cavity optomechanics and with levitated nanoparticles. Our classical theory fully reproduces experimental observations and agrees with the results obtained by a quantum theoretical treatment.