光力学
物理
联轴节(管道)
谐振器
四波混频
库仑
混合(物理)
领域(数学)
信号(编程语言)
共振(粒子物理)
量子电动力学
光学
原子物理学
非线性光学
量子力学
激光器
材料科学
数学
计算机科学
纯数学
冶金
程序设计语言
电子
作者
Muhib Ullah,Farhan Saif,Li‐Gang Wang
标识
DOI:10.1002/qute.202000061
摘要
Abstract The generation and manipulation of the four‐wave mixing (FWM) phenomenon is reported in a hybrid electrostatically Coulomb‐coupled optomechanical system as a result of light–matter interaction. The cavity is driven by a strong coherent pump and a weak probe field simultaneously in the presence of nanomechanical resonators (NMRs), and the output field can produce a new frequency component called the FWM frequency. In a hybrid Coulomb‐coupled cavity scheme, the existence of optomechanical coupling due to radiation pressure gives rise to the FWM phenomenon, which is shown both analytically and numerically. A controllable enhancement of the FWM intensity is found by tuning the pump field strength and its spectrum disappears upon switching the strength off. A significant enhancement in the FWM spectrum with two peaks is also predicted due to the Coulomb coupling strength existing between two electrostatically coupled NMR 1 and NMR 2 . A suppressive behavior of the FWM signal is also observed upon increasing the cavity decay rate and a substantial modulation in the signal by changing the probe‐pump field detuning. Finally, the FWM spectrum is very sensitive to both the effective resonance frequencies and effective masses of the NMRs.
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