The mapping approach addresses the mismatch between the continuous nuclear phase space and discrete electronic states by creating an extended, fully continuous phase space using a set of harmonic oscillators to encode the populations and coherences of the electronic states. Existing quasiclassical dynamics methods based on mapping, such as the linearised semiclassical initial value representation (LSC-IVR) and Poisson bracket mapping equation (PBME) approaches, have been shown to fail in predicting the correct relaxation of electronic-state populations following an initial excitation. Here we generalise our recently published modification to the standard quasiclassical approximation for simulating quantum correlation functions. We show that...
This chapter discusses the role of decoherence in mixed quantum–classical approaches to electronical...
We present a new approach for calculating quantum time correlation functions for systems whose dynam...
A variety of quasiclassical approximations to quantum dynamical observables and correlation function...
Simulating the nonadiabatic dynamics of condensed-phase systems continues to pose a significant chal...
We extend the Mixed Quantum-Classical Initial Value Representation (MQC-IVR), a semiclassical method...
We derive an exact quantum propagator for nonadiabatic dynamics in multi-state systems using the map...
Mixed quantum–classical mechanical descriptions are critical to modeling coupled electron–nuclear dy...
arXiv:1512.04638v2Trajectory-based mixed quantum-classical approaches to coupled electron–nuclear dy...
Trajectory-based mixed, quantum-classical approaches to coupled electron-nuclear dynamics suffer fro...
Advances in coherent light sources and development of pump-probe techniques in recent decades have o...
WOS:000441475900004International audienceNonadiabatic mixed quantum-classical (NA-MQC) dynam...
Accurately describing nuclear motion is crucial in electronically nonadiabatic dynamics simulations....
A new partially linearized approximate approach to non-adiabatic quantum dynamics is derived based o...
Trajectory-based approaches to excited-state, nonadiabatic dynamics are promising simulation techniq...
In this work, a direct mixed quantum-classical dynamics approach is presented, which combines two ne...
This chapter discusses the role of decoherence in mixed quantum–classical approaches to electronical...
We present a new approach for calculating quantum time correlation functions for systems whose dynam...
A variety of quasiclassical approximations to quantum dynamical observables and correlation function...
Simulating the nonadiabatic dynamics of condensed-phase systems continues to pose a significant chal...
We extend the Mixed Quantum-Classical Initial Value Representation (MQC-IVR), a semiclassical method...
We derive an exact quantum propagator for nonadiabatic dynamics in multi-state systems using the map...
Mixed quantum–classical mechanical descriptions are critical to modeling coupled electron–nuclear dy...
arXiv:1512.04638v2Trajectory-based mixed quantum-classical approaches to coupled electron–nuclear dy...
Trajectory-based mixed, quantum-classical approaches to coupled electron-nuclear dynamics suffer fro...
Advances in coherent light sources and development of pump-probe techniques in recent decades have o...
WOS:000441475900004International audienceNonadiabatic mixed quantum-classical (NA-MQC) dynam...
Accurately describing nuclear motion is crucial in electronically nonadiabatic dynamics simulations....
A new partially linearized approximate approach to non-adiabatic quantum dynamics is derived based o...
Trajectory-based approaches to excited-state, nonadiabatic dynamics are promising simulation techniq...
In this work, a direct mixed quantum-classical dynamics approach is presented, which combines two ne...
This chapter discusses the role of decoherence in mixed quantum–classical approaches to electronical...
We present a new approach for calculating quantum time correlation functions for systems whose dynam...
A variety of quasiclassical approximations to quantum dynamical observables and correlation function...