论文标题
单分子的纳米腔增强谐振拉曼散射的光力效应
Optomechanical Effects in Nanocavity-enhanced Resonant Raman Scattering of a Single Molecule
论文作者
论文摘要
在本文中,我们通过开发一种量子主方程理论来解决镜像(NPOM)纳米腔中的纳米粒子中的单个分子中的表面增强共振拉曼散射(SERR)的光学力学效应,该量子纳米腔(结合开放量化量子系统中的范围内的量子量子动力学和电子磁相互作用)。我们通过电磁模拟和时间依赖性密度的功能理论计算来补充理论,以便研究逼真的NPOM纳米腔中的甲基蓝分子的SERR。这些仿真不仅使我们不仅可以确定实现常规的光学效应的条件,例如振动泵,斯托克斯和反stokes散射的非线性缩放,还可以针对发现不同的行为,例如激子种群的饱和,Mollow Triplet Band-Bands的出现以及高级Raman散射。总而言之,我们的研究可能指导对共振拉曼散射中光力效应的进一步研究。
In this article, we address the optomechanical effects in surface-enhanced resonant Raman scattering (SERRS) from a single molecule in a nano-particle on mirror (NPoM) nanocavity by developing a quantum master equation theory, which combines macroscopic quantum electrodynamics and electron-vibration interaction within the framework of open quantum system theory. We supplement the theory with electromagnetic simulations and time-dependent density functional theory calculations in order to study the SERRS of a methylene blue molecule in a realistic NPoM nanocavity. The simulations allow us not only to identify the conditions to achieve conventional optomechanical effects, such as vibrational pumping, non-linear scaling of Stokes and anti-Stokes scattering, but also to discovery distinct behaviors, such as the saturation of exciton population, the emergence of Mollow triplet side-bands, and higher-order Raman scattering. All in all, our study might guide further investigations of optomechanical effects in resonant Raman scattering.