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Ultrafast dynamics induced by the interaction of molecules with electromagnetic fields: Several quantum, semiclassical, and classical approaches

机译:分子与电磁场相互作用引起的超快动力学:几种量子,半经典和经典方法

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Several strategies for simulating the ultrafast dynamics of molecules induced by interactions with electromagnetic fields are presented. After a brief overview of the theory of molecule-field interaction, we present several representative examples of quantum, semiclassical, and classical approaches to describe the ultrafast molecular dynamics, including the multiconfiguration time-dependent Hartree method, Bohmian dynamics, local control theory, semiclassical thawed Gaussian approximation, phase averaging, dephasing representation, molecular mechanics with proton transfer, and multipolar force fields. In addition to the general overview, some focus is given to the description of nuclear quantum effects and to the direct dynamics, in which the ab initio energies and forces acting on the nuclei are evaluated on the fly. Several practical applications, performed within the framework of the Swiss National Center of Competence in Research “Molecular Ultrafast Science and Technology,” are presented: These include Bohmian dynamics description of the collision of H with H2, local control theory applied to the photoinduced ultrafast intramolecular proton transfer, semiclassical evaluation of vibrationally resolved electronic absorption, emission, photoelectron, and time-resolved stimulated emission spectra, infrared spectroscopy of H-bonding systems, and multipolar force fields applications in the condensed phase.
机译:提出了几种模拟与电磁场相互作用引起的分子超快动力学的策略。在简要概述了分子-场相互作用的理论之后,我们提供了一些量子,半经典和经典方法的代表性例子来描述超快分子动力学,包括多配置时变哈特里特方法,Bohmian动力学,局部控制理论,半经典解冻了高斯近似,相位平均,移相表示,具有质子传递的分子力学以及多极力场。除了一般概述之外,还着重介绍了核量子效应和直接动力学,其中动态评估了从头算起的能量和作用于原子核的力。介绍了在瑞士国家能力研究中心“分子超快科学与技术”的框架内进行的一些实际应用:这些包括H与H 2 碰撞的Bohmian动力学描述,局部控制理论应用于光诱导的超快分子内质子传递,振动分辨电子吸收,发射,光电子和时间分辨受激发射光谱的半经典评估,H键系统的红外光谱以及在凝聚相中的多极力场应用。

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