We investigate the longstanding problem of thermalization of quantum systems coupled to an environment by focusing on a bistable quartic oscillator interacting with a finite number of harmonic oscillators. In order to overcome the exponential wall that one usually encounters in grid-based approaches to solve the time-dependent Schrodinger equation of the extended system, methods based on the time-dependent variational principle are best suited. Here we will apply the method of coupled coherent states [D. V. Shalashilin and M. S. Child, J. Chem. Phys. 113, 10028 (2000)]. By investigating the dynamics of an initial wave function on top of the barrier of the double well, it will be shown that only a handful of oscillators with suitably chosen ...
Chaos and ergodicity are the cornerstones of statistical physics and thermodynamics. While classical...
We study measures of decoherence and thermalization of a quantum system S in the presence of a quant...
We investigate the equilibration and thermalization properties of quantum systems interacting with a...
We investigate thermalization in finite quantum systems using coherent state-based approaches to sol...
We investigate thermalization in finite quantum systems using coherent state-based approaches to sol...
We study a quantum harmonic oscillator undergoing thermalization. To describe the thermalization pro...
In this work, we show how Gibbs or thermal states appear dynamically in closed quantum many-body sys...
In this paper, we introduce two simple quantum dynamics methods. One is based on the popular surface...
In this paper, we introduce two simple quantum dynamics methods. One is based on the popular surface...
We present an exactly solvable model to study the role of the system-bath coupling for the generaliz...
The dissipative dynamics of a quantum bistable system coupled to a Ohmic heat bath is investigated b...
The dissipative dynamics of a quantum bistable system coupled to a Ohmic heat bath is investigated b...
The dissipative dynamics of a quantum bistable system coupled to a Ohmic heat bath is investigated b...
In this paper, we introduce two simple quantum dynamics methods. One is based on the popular surface...
We consider a discrete quantum system coupled to a finite bath, which may consist of only one partic...
Chaos and ergodicity are the cornerstones of statistical physics and thermodynamics. While classical...
We study measures of decoherence and thermalization of a quantum system S in the presence of a quant...
We investigate the equilibration and thermalization properties of quantum systems interacting with a...
We investigate thermalization in finite quantum systems using coherent state-based approaches to sol...
We investigate thermalization in finite quantum systems using coherent state-based approaches to sol...
We study a quantum harmonic oscillator undergoing thermalization. To describe the thermalization pro...
In this work, we show how Gibbs or thermal states appear dynamically in closed quantum many-body sys...
In this paper, we introduce two simple quantum dynamics methods. One is based on the popular surface...
In this paper, we introduce two simple quantum dynamics methods. One is based on the popular surface...
We present an exactly solvable model to study the role of the system-bath coupling for the generaliz...
The dissipative dynamics of a quantum bistable system coupled to a Ohmic heat bath is investigated b...
The dissipative dynamics of a quantum bistable system coupled to a Ohmic heat bath is investigated b...
The dissipative dynamics of a quantum bistable system coupled to a Ohmic heat bath is investigated b...
In this paper, we introduce two simple quantum dynamics methods. One is based on the popular surface...
We consider a discrete quantum system coupled to a finite bath, which may consist of only one partic...
Chaos and ergodicity are the cornerstones of statistical physics and thermodynamics. While classical...
We study measures of decoherence and thermalization of a quantum system S in the presence of a quant...
We investigate the equilibration and thermalization properties of quantum systems interacting with a...