The hierarchical equations of motion technique has found widespread success as a tool to generate the numerically exact dynamics of non-Markovian open quantum systems. However, its application to low temperature environments remains a serious challenge due to the need for a deep hierarchy that arises from the Matsubara expansion of the bath correlation function. Here we present a hybrid stochastic hierarchical equation of motion (sHEOM) approach that alleviates this bottleneck and leads to a numerical cost that is nearly independent of temperature. Additionally, the sHEOM method generally converges with fewer hierarchy tiers allowing for the treatment of larger systems. Benchmark calculations are presented on the dynamics of two level syste...
We rigorously investigate the quantum non-Markovian dissipative dynamics of a system coupled to a ha...
An accurate and efficient numerical approach is developed for the transient electronic dynamics of o...
This work is a pedagogical survey about the hierarchical equations of motion and their implementatio...
An open quantum system refers to a system that is further coupled to a bath system consisting of sur...
We present a theoretical framework to investigate quantum thermodynamic processes under non-Markovia...
The hierarchical equations of motion (HEOM), derived from the exact Feynman-Vernon path integral, is...
We extend a standard stochastic theory to study open quantum systems coupled to a generic quantum en...
Quantum dissipation theory (QDT) plays a key role describing the reduced system dynamics under influ...
In this review we give a comprehensive account of a hierarchical equations of motion (HEOM) approach...
International audienceOptimal control theory is implemented with fully converged hierarchical equati...
International audienceOptimal control theory is implemented with fully converged hierarchical equati...
We present an optimized hierarchical equations of motion theory for quantum dissipation in multiple ...
Our starting point is a stochastic decomposition scheme to study dissipative dynamics of an open sys...
We introduce a new analytical method for studying the open quantum systems problem of a discrete sys...
We introduce a new analytical method for studying the open quantum systems problem of a discrete sys...
We rigorously investigate the quantum non-Markovian dissipative dynamics of a system coupled to a ha...
An accurate and efficient numerical approach is developed for the transient electronic dynamics of o...
This work is a pedagogical survey about the hierarchical equations of motion and their implementatio...
An open quantum system refers to a system that is further coupled to a bath system consisting of sur...
We present a theoretical framework to investigate quantum thermodynamic processes under non-Markovia...
The hierarchical equations of motion (HEOM), derived from the exact Feynman-Vernon path integral, is...
We extend a standard stochastic theory to study open quantum systems coupled to a generic quantum en...
Quantum dissipation theory (QDT) plays a key role describing the reduced system dynamics under influ...
In this review we give a comprehensive account of a hierarchical equations of motion (HEOM) approach...
International audienceOptimal control theory is implemented with fully converged hierarchical equati...
International audienceOptimal control theory is implemented with fully converged hierarchical equati...
We present an optimized hierarchical equations of motion theory for quantum dissipation in multiple ...
Our starting point is a stochastic decomposition scheme to study dissipative dynamics of an open sys...
We introduce a new analytical method for studying the open quantum systems problem of a discrete sys...
We introduce a new analytical method for studying the open quantum systems problem of a discrete sys...
We rigorously investigate the quantum non-Markovian dissipative dynamics of a system coupled to a ha...
An accurate and efficient numerical approach is developed for the transient electronic dynamics of o...
This work is a pedagogical survey about the hierarchical equations of motion and their implementatio...