论文标题
通过线宽抑制和腔体波导系统中的线宽抑制和光学双重性增强了光学机械诱导的非线性感测
Enhanced sensing of optomechanically induced nonlinearity by linewidth suppression and optical bistability in cavity-waveguide systems
论文作者
论文摘要
我们研究了在腔体波导耦合系统中对光机电诱导的非线性(AMIN)的增强感测。该系统的哈密顿量是抗PT对称的,两个腔涉及通过波导散发偶联。当引入弱波导介导的相干耦合时,抗PT对称性可能会分解。但是,我们发现,腔强度对腔谐振附近的AMIN的强烈双重反应受益于由真空诱导的相干性引起的线宽抑制。仅涉及耗散耦合的反对称系统无法访问光学双重性和线宽抑制的关节效应。因此,与反对对称模型相比,两个数量级的灵敏度大大增强了。此外,敏感性显示出对腔体波动失调的相当大的空腔衰减和稳健性的抗性。基于集成的光力学波力波导系统,该方案可用于感测与单光子偶联强度相关的不同物理量,并在高精度测量中与涉及KERR型非线性的物理系统具有潜在的应用。
We study enhanced sensing of optomechanically induced nonlinearity (OMIN) in a cavity-waveguide coupled system. The Hamiltonian of the system is anti-PT symmetric with the two involved cavities being dissipatively coupled via the waveguide. When a weak waveguide-mediated coherent coupling is introduced, the anti-PT symmetry may break down. However, we find a strong bistable response of the cavity intensity to the OMIN near the cavity resonance, benefiting from linewidth suppression caused by the vacuum induced coherence. The joint effect of optical bistability and the linewidth suppression is inaccessible by the anti-PT symmetric system involving only dissipative coupling. Due to that, the sensitivity is greatly enhanced by two orders of magnitude compared to that for the anti-PT symmetric model. Moreover, the sensitivity shows resistances to a reasonably large cavity decay and robustness to fluctuations in the cavity-waveguide detuning. Based on the integrated optomechanical cavity-waveguide systems, the scheme can be used for sensing different physical quantities related to the single-photon coupling strength, and has potential applications in high-precision measurements with physical systems involving Kerr-type nonlinearity.