We investigate thermalization in finite quantum systems using coherent state-based approaches to solve the time-dependent Schr\'odinger equation. Earlier, a lot of work has been done in the quantum realm, to study thermalization in spin systems, but not for the case of continuous systems. Here, we focus on continuous systems. We study the zero temperature thermalization i.e., we consider the ground states of the bath oscillators (environment). In order to study the quantum dynamics of a system under investigation, we require numerical methods to solve the time-dependent Schr\'odinger equation. We describe different numerical methods like the split-operator fast fourier transform, coupled coherent states, static grid of coherent states, sem...
Why is thermalisation a universal phenomenon? How does a quantum system reach thermodynamical equili...
Why is thermalisation a universal phenomenon? How does a quantum system reach thermodynamical equili...
Why is thermalisation a universal phenomenon? How does a quantum system reach thermodynamical equili...
We investigate thermalization in finite quantum systems using coherent state-based approaches to sol...
We investigate the longstanding problem of thermalization of quantum systems coupled to an environme...
We consider a quantum system $S$ with Hamiltonian ${\cal H}_S$ coupled via a Hamiltonian ${\cal H}_{...
So-called system-bath dynamical problems are ubiquitous in chemical physics. They represent one of t...
A novel quantum methods to deal with typical system-bath dynamical problems is introduced. Subsystem...
We study measures of decoherence and thermalization of a quantum system S in the presence of a quant...
An exact stochastic model for the thermalization of quantum states is proposed. The model has variou...
So called system-bath problems arise naturally in chemistry and physics, e.g. in gas-surface process...
Thermostated time evolutions are on a firm ground and widely used in classical molecular dynamics (M...
In this work, we show how Gibbs or thermal states appear dynamically in closed quantum many-body sys...
We introduce a method “DMT” for approximating density operators of 1D systems that, when combined wi...
In this review, we discuss the decoherence and thermalization of a quantum spin system interacting w...
Why is thermalisation a universal phenomenon? How does a quantum system reach thermodynamical equili...
Why is thermalisation a universal phenomenon? How does a quantum system reach thermodynamical equili...
Why is thermalisation a universal phenomenon? How does a quantum system reach thermodynamical equili...
We investigate thermalization in finite quantum systems using coherent state-based approaches to sol...
We investigate the longstanding problem of thermalization of quantum systems coupled to an environme...
We consider a quantum system $S$ with Hamiltonian ${\cal H}_S$ coupled via a Hamiltonian ${\cal H}_{...
So-called system-bath dynamical problems are ubiquitous in chemical physics. They represent one of t...
A novel quantum methods to deal with typical system-bath dynamical problems is introduced. Subsystem...
We study measures of decoherence and thermalization of a quantum system S in the presence of a quant...
An exact stochastic model for the thermalization of quantum states is proposed. The model has variou...
So called system-bath problems arise naturally in chemistry and physics, e.g. in gas-surface process...
Thermostated time evolutions are on a firm ground and widely used in classical molecular dynamics (M...
In this work, we show how Gibbs or thermal states appear dynamically in closed quantum many-body sys...
We introduce a method “DMT” for approximating density operators of 1D systems that, when combined wi...
In this review, we discuss the decoherence and thermalization of a quantum spin system interacting w...
Why is thermalisation a universal phenomenon? How does a quantum system reach thermodynamical equili...
Why is thermalisation a universal phenomenon? How does a quantum system reach thermodynamical equili...
Why is thermalisation a universal phenomenon? How does a quantum system reach thermodynamical equili...