The "hierarchical equations of motion"(HEOM) method is a powerful exact numerical approach to solve the dynamics and find the steady-state of a quantum system coupled to a non-Markovian and nonperturbative environment. Originally developed in the context of physical chemistry, it has also been extended and applied to problems in solid-state physics, optics, single-molecule electronics, and biological physics. Here we present a numerical library in Python, integrated with the powerful QuTiP platform, which implements the HEOM for both bosonic and fermionic environments. We demonstrate its utility with a series of examples consisting of benchmarks against important known results and examples demonstrating insights gained with this library for...
The Hierarchical Equations of Motion (HEOM) method has become one of the cornerstones in the simulat...
The Hierarchical Equations of Motion (HEOM) method has become one of the cornerstones in the simulat...
International audienceTargeted exciton transport is crucial for efficient light-harvesting, but its ...
The "hierarchical equations of motion"(HEOM) method is a powerful exact numerical approach to solve ...
The "hierarchical equations of motion" (HEOM) method is a powerful exact numerical approach to solve...
An open quantum system refers to a system that is further coupled to a bath system consisting of sur...
Methods based on path integral molecular dynamics (PIMD) are a family of chemical dynamics technique...
In this review we give a comprehensive account of a hierarchical equations of motion (HEOM) approach...
Quantum dissipation theory (QDT) plays a key role describing the reduced system dynamics under influ...
The hierarchical equations of motion technique has found widespread success as a tool to generate th...
The nonequilibrium Green’s function-hierarchical equation of motion (NEGFHEOM) method has been devel...
International audienceTargeted exciton transport is crucial for efficient light-harvesting, but its ...
Recently, many researches have shown that even photosynthetic light-harvesting pigment-protein compl...
International audienceOptimal control theory is implemented with fully converged hierarchical equati...
International audienceOptimal control theory is implemented with fully converged hierarchical equati...
The Hierarchical Equations of Motion (HEOM) method has become one of the cornerstones in the simulat...
The Hierarchical Equations of Motion (HEOM) method has become one of the cornerstones in the simulat...
International audienceTargeted exciton transport is crucial for efficient light-harvesting, but its ...
The "hierarchical equations of motion"(HEOM) method is a powerful exact numerical approach to solve ...
The "hierarchical equations of motion" (HEOM) method is a powerful exact numerical approach to solve...
An open quantum system refers to a system that is further coupled to a bath system consisting of sur...
Methods based on path integral molecular dynamics (PIMD) are a family of chemical dynamics technique...
In this review we give a comprehensive account of a hierarchical equations of motion (HEOM) approach...
Quantum dissipation theory (QDT) plays a key role describing the reduced system dynamics under influ...
The hierarchical equations of motion technique has found widespread success as a tool to generate th...
The nonequilibrium Green’s function-hierarchical equation of motion (NEGFHEOM) method has been devel...
International audienceTargeted exciton transport is crucial for efficient light-harvesting, but its ...
Recently, many researches have shown that even photosynthetic light-harvesting pigment-protein compl...
International audienceOptimal control theory is implemented with fully converged hierarchical equati...
International audienceOptimal control theory is implemented with fully converged hierarchical equati...
The Hierarchical Equations of Motion (HEOM) method has become one of the cornerstones in the simulat...
The Hierarchical Equations of Motion (HEOM) method has become one of the cornerstones in the simulat...
International audienceTargeted exciton transport is crucial for efficient light-harvesting, but its ...