For a broad class of quantum models of practical interest, we demonstrate that the Hamiltonian of the system nonlinearly coupled to a harmonic bath through the system and bath coordinates can be equivalently mapped into the Hamiltonian of the system bilinearly coupled to the bath through the system and bath momenta. We show that the Hamiltonian with bilinear system-bath momentum coupling can be treated by the hierarchical equations-of-motion (HEOM) method and present the corresponding proof-of-principle simulations. The developed methodology creates the opportunity to scrutinize a new family of nonlinear quantum systems by the numerically accurate HEOM method
The Hierarchical Equations of Motion (HEOM) method has become one of the cornerstones in the simulat...
ABSTRACT: In this article, we develop a series of hierarchical mode-coupling equations for the momen...
The Hierarchical Equations of Motion (HEOM) method has become one of the cornerstones in the simulat...
An open quantum system refers to a system that is further coupled to a bath system consisting of sur...
The theory of hierarchical equations of motion (HEOM) is one of the standard methods to give exact e...
We present a theoretical framework to investigate quantum thermodynamic processes under non-Markovia...
In this review we give a comprehensive account of a hierarchical equations of motion (HEOM) approach...
Methods based on path integral molecular dynamics (PIMD) are a family of chemical dynamics technique...
The Redfield equation describes the dynamics of a quantum system weakly coupled to one or more reser...
A hierarchical equations of motion formalism for a quantum dissipation system in a grand canonical b...
A hierarchical equations of motion formalism for a quantum dissipation system in a grand canonical b...
A novel quantum methods to deal with typical system-bath dynamical problems is introduced. Subsystem...
We present an optimized hierarchical equations of motion theory for quantum dissipation in multiple ...
In studying open quantum systems, the environment is often approximated as a collection of non-inter...
We rigorously investigate the quantum non-Markovian dissipative dynamics of a system coupled to a ha...
The Hierarchical Equations of Motion (HEOM) method has become one of the cornerstones in the simulat...
ABSTRACT: In this article, we develop a series of hierarchical mode-coupling equations for the momen...
The Hierarchical Equations of Motion (HEOM) method has become one of the cornerstones in the simulat...
An open quantum system refers to a system that is further coupled to a bath system consisting of sur...
The theory of hierarchical equations of motion (HEOM) is one of the standard methods to give exact e...
We present a theoretical framework to investigate quantum thermodynamic processes under non-Markovia...
In this review we give a comprehensive account of a hierarchical equations of motion (HEOM) approach...
Methods based on path integral molecular dynamics (PIMD) are a family of chemical dynamics technique...
The Redfield equation describes the dynamics of a quantum system weakly coupled to one or more reser...
A hierarchical equations of motion formalism for a quantum dissipation system in a grand canonical b...
A hierarchical equations of motion formalism for a quantum dissipation system in a grand canonical b...
A novel quantum methods to deal with typical system-bath dynamical problems is introduced. Subsystem...
We present an optimized hierarchical equations of motion theory for quantum dissipation in multiple ...
In studying open quantum systems, the environment is often approximated as a collection of non-inter...
We rigorously investigate the quantum non-Markovian dissipative dynamics of a system coupled to a ha...
The Hierarchical Equations of Motion (HEOM) method has become one of the cornerstones in the simulat...
ABSTRACT: In this article, we develop a series of hierarchical mode-coupling equations for the momen...
The Hierarchical Equations of Motion (HEOM) method has become one of the cornerstones in the simulat...