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首页> 外文期刊>Journal of Physics, B. Atomic, Molecular and Optical Physics: An Institute of Physics Journal >On the effects of permanent molecular dipole moments in two-photon molecular excitations: An analytic generalized rotating wave approximation treatment including both the direct permanent dipole and the virtual state excitation mechanisms
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On the effects of permanent molecular dipole moments in two-photon molecular excitations: An analytic generalized rotating wave approximation treatment including both the direct permanent dipole and the virtual state excitation mechanisms

机译:关于双光子分子激发中的永久分子偶极矩的影响:包含直接永久偶极子和虚拟状态激发机制的解析广义旋转波近似处理

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One of the purposes of this paper is to develop an analytical many-level generalized rotating wave approximation (GRWA), including the effects of permanent dipoles, for the excitation of many-level molecules through the simultaneous absorption of two photons. Included are expressions for the two-photon laser-molecule coupling C, and its two components C_d and C_v corresponding to the direct permanent dipole and the virtual state excitation mechanisms, respectively, and related observables such as the time-dependent populations of the initial and final states of the excitation process and resonance profiles. This GRWA treatment also includes an energy shift parameter ε, which causes shifts in the position of the resonance energy as the laser intensity increases. The effects of permanent dipoles are very different in C_v and ε versus C_d. These effects have been discussed previously for C_d using analytic two-level RWA approaches. The analytical results for C_v and ε obtained here are new as is their use in discussing the influence of permanent dipoles in the parts of the two-photon excitation process involving virtual states. In the absence of permanent dipoles C_d is zero whereas C_v and ε are not; they equal the corresponding perturbation theory results. The GRWA and perturbative results are related by Bessel function damping functions which, for dipolar molecules, damp out the divergence of the perturbative results as the laser intensity increases. Illustrative examples are given for a two-photon excitation involving a model chromophore which has a significant virtual state contribution through both the laser-molecule coupling and the energy shift parameter.
机译:本文的目的之一是开发一种分析多级广义旋转波近似(GRWA),包括永久偶极子的影响,以通过同时吸收两个光子来激发多级分子。包括双光子激光分子耦合C及其分别对应于直接永久偶极子和虚拟状态激发机制的两个分量C_d和C_v的表达式,以及相关的可观测值,例如初始和第二时间随时间的分布激发过程的最终状态和共振曲线。该GRWA处理还包括一个能量偏移参数ε,该参数随激光强度的增加而引起共振能量位置的偏移。永久偶极子的影响在C_v和ε与C_d中非常不同。先前已经使用解析两级RWA方法针对C_d讨论了这些影响。此处获得的C_v和ε的分析结果是新的,因为它们用于讨论永久偶极子在涉及虚拟状态的双光子激发过程的部分中的影响。在没有永久偶极子的情况下,C_d为零,而C_v和ε不为零。它们等于相应的扰动理论结果。 GRWA和微扰结果与贝塞尔函数阻尼函数有关,贝塞尔函数阻尼函数对于偶极分子,随着激光强度的增加而减弱了微扰结果的发散。给出了涉及模型生色团的双光子激发的说明性实例,该生色团通过激光-分子耦合和能量转移参数具有显着的虚拟状态贡献。

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