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From a quantum-electrodynamical light–matter description to novel spectroscopies
Insights from spectroscopic experiments led to the development of quantum mechanics as
the common theoretical framework for describing the physical and chemical properties of …
the common theoretical framework for describing the physical and chemical properties of …
Time‐dependent density matrix renormalization group method for quantum dynamics in complex systems
The simulations of spectroscopy and quantum dynamics are of vital importance to the
understanding of the electronic processes in complex systems, including the …
understanding of the electronic processes in complex systems, including the …
[HTML][HTML] Numerically “exact” approach to open quantum dynamics: The hierarchical equations of motion (HEOM)
An open quantum system refers to a system that is further coupled to a bath system
consisting of surrounding radiation fields, atoms, molecules, or proteins. The bath system is …
consisting of surrounding radiation fields, atoms, molecules, or proteins. The bath system is …
[HTML][HTML] Universal time-domain Prony fitting decomposition for optimized hierarchical quantum master equations
In this Communication, we propose the time-domain Prony fitting decomposition (t-PFD) as
an accurate and efficient exponential series method, applicable to arbitrary bath correlation …
an accurate and efficient exponential series method, applicable to arbitrary bath correlation …
Hierarchical quantum master equation approach to electronic-vibrational coupling in nonequilibrium transport through nanosystems
Within the hierarchical quantum master equation (HQME) framework, an approach is
presented, which allows a numerically exact description of nonequilibrium charge transport …
presented, which allows a numerically exact description of nonequilibrium charge transport …
Efficient low-temperature simulations for fermionic reservoirs with the hierarchical equations of motion method: Application to the Anderson impurity model
The hierarchical equations of motion (HEOM) approach is an accurate method to simulate
open system quantum dynamics, which allows for systematic convergence to numerically …
open system quantum dynamics, which allows for systematic convergence to numerically …
Hierarchical equations of motion approach to hybrid fermionic and bosonic environments: Matrix product state formulation in twin space
We extend the twin-space formulation of the hierarchical equations of motion approach in
combination with the matrix product state representation [R. Borrelli, J. Chem. Phys. 150 …
combination with the matrix product state representation [R. Borrelli, J. Chem. Phys. 150 …
[HTML][HTML] A unified stochastic formulation of dissipative quantum dynamics. I. Generalized hierarchical equations
We extend a standard stochastic theory to study open quantum systems coupled to a
generic quantum environment. We exemplify the general framework by studying a two-level …
generic quantum environment. We exemplify the general framework by studying a two-level …
[HTML][HTML] Green's function methods for single molecule junctions
We present a brief pedagogical review of theoretical Green's function methods applicable to
open quantum systems out of equilibrium, in general, and single molecule junctions, in …
open quantum systems out of equilibrium, in general, and single molecule junctions, in …
Quantum mechanics of open systems: Dissipaton theories
This Perspective presents a comprehensive account of the dissipaton theories developed in
our group since 2014, including the physical picture of dissipatons and the phase–space …
our group since 2014, including the physical picture of dissipatons and the phase–space …