首页> 外文期刊>The Journal of Chemical Physics >Nonperturbative vibrational energy relaxation effects on vibrational line shapes
【24h】

Nonperturbative vibrational energy relaxation effects on vibrational line shapes

机译:非扰动振动能量松弛对振动线形的影响

获取原文
获取原文并翻译 | 示例
           

摘要

A general formulation of nonperturbative quantum dynamics of solutes in a condensed phase is proposed to calculate linear and nonlinear vibrational line shapes. In the weak solute-solvent interaction limit, the temporal absorption profile can be approximately factorized into the population relaxation profile from the off-diagonal coupling and the pure-dephasing profile from the diagonal coupling. The strength of dissipation and the anharmonicity-induced dephasing rate are derived in Appendix A. The vibrational energy relaxation (VER) rate is negligible for slow solvent fluctuations, yet it does not justify the Markovian treatment of off-diagonal contributions to vibrational line shapes. Non-Markovian VER effects are manifested as asymmetric envelops in the temporal absorption profile, or equivalently as side bands in the frequency domain absorption spectrum. The side bands are solvent-induced multiple-photon effects which are absent in the Markovian VER treatment. Exact path integral calculations yield non-Lorentzian central peaks in absorption spectrum resulting from couplings between population relaxations of different vibrational states. These predictions cannot be reproduced by the perturbative or the Markovian approximations. For anharmonic potentials, the absorption spectrum shows asymmetric central peaks and the asymmetry increases with anharmonicity. At large anharmonicities, all the approximation schemes break down and a full nonperturbative path integral calculation that explicitly accounts for the exact VER effects is needed. A numerical analysis of the O-H stretch of HOD in D2O solvent reveals that the non-Markovian VER effects generate a small recurrence of the echo peak shift around 200 fs, which cannot be reproduced with a Markovian VER rate. In general, the nonperturbative and non-Markovian VER contributions have a stronger effect on nonlinear vibrational line shapes than on linear absorption.(C) 2004 American Institute of Physics.
机译:提出了凝聚态非溶质量子动力学的一般公式,用于计算线性和非线性振动线的形状。在弱的溶质-溶剂相互作用极限下,时间吸收曲线可以近似地分解为非对角线耦合的总体弛豫曲线和对角线耦合的纯相移曲线。耗散的强度和由非谐波引起的移相速率在附录A中得出。对于缓慢的溶剂波动,振动能量弛豫(VER)速率可以忽略不计,但它不能证明对振动线形状的非对角贡献的Markovian处理是合理的。非马尔可夫VER效应在时间吸收曲线中表现为不对称包络,或在频域吸收谱中等效地表现为边带。边带是溶剂引起的多光子效应,这在马尔可夫VER处理中是不存在的。精确的路径积分计算会在吸收光谱中产生非洛伦兹中心峰,这是由于不同振动状态的总体弛豫之间的耦合引起的。这些预测不能通过微扰或马尔可夫近似来再现。对于非谐电位,吸收光谱显示出不对称的中心峰,并且不对称性随非谐性而增加。在大的非谐性下,所有的近似方案都将失效,因此需要一个完整的非扰动路径积分计算来明确说明确切的VER效应。对D2O溶剂中HOD的O-H拉伸的数值分析表明,非马尔可夫VER效应会在200 fs附近产生少量的回声峰偏移,这无法以马尔可夫VER速率再现。通常,非摄动和非马尔可夫VER贡献对非线性振动线形状的影响要大于对线性吸收的影响。(C)2004年,美国物理研究所。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号