Providing the microscopic behavior of a thermalization process has always been an intriguing issue. There are several models of thermalization, which often require interaction of the system under consideration with the microscopic constituents of the macroscopic heat bath. With the aim to simulate such a thermalization process, here we look at the thermalization of a two-level quantum system under the action of a Markovian master equation corresponding to memory-less action of a heat bath, kept at a certain temperature, using a single-qubit ancilla. A two-qubit interaction Hamiltonian (Hth, say) is then designed —with a single-qubit thermal state as the initial state of the ancilla— which gives rise to thermalization of the system qubit in ...
We study optimal control strategies to optimize the relaxation rate towards the fixed point of a qua...
A very fundamental problem in quantum statistical mechanics involves whether—and how—an isolated qua...
Recent work using tools from quantum information theory has shown that for small systems where quant...
An exact stochastic model for the thermalization of quantum states is proposed. The model has variou...
We develop a scheme for engineering genuine thermal states in analog quantum simulation platforms by...
We develop a scheme for engineering genuine thermal states in analog quantum simulation platforms by...
It is shown that by fitting a Markovian quantum master equation to the numerical solution of the tim...
We study a quantum harmonic oscillator undergoing thermalization. To describe the thermalization pro...
We study the relaxation of a quantum system towards the thermal equilibrium using tools developed wi...
AbstractWe compute the quantum Langevin equation (or more exactly, the quantum stochastic differenti...
We consider thermalisation and spontaneous decay of a two-level atom beyond the Markovian approximat...
We provide a versatile analytical framework for calculating the dynamics of a spin system in contact...
Thermal rectification behaviors for some small quantum systems are studied by using the Lindblad mas...
We study the dynamics of heat flux in the thermalization process of a pair of identical quantum sys...
Why is thermalisation a universal phenomenon? How does a quantum system reach thermodynamical equili...
We study optimal control strategies to optimize the relaxation rate towards the fixed point of a qua...
A very fundamental problem in quantum statistical mechanics involves whether—and how—an isolated qua...
Recent work using tools from quantum information theory has shown that for small systems where quant...
An exact stochastic model for the thermalization of quantum states is proposed. The model has variou...
We develop a scheme for engineering genuine thermal states in analog quantum simulation platforms by...
We develop a scheme for engineering genuine thermal states in analog quantum simulation platforms by...
It is shown that by fitting a Markovian quantum master equation to the numerical solution of the tim...
We study a quantum harmonic oscillator undergoing thermalization. To describe the thermalization pro...
We study the relaxation of a quantum system towards the thermal equilibrium using tools developed wi...
AbstractWe compute the quantum Langevin equation (or more exactly, the quantum stochastic differenti...
We consider thermalisation and spontaneous decay of a two-level atom beyond the Markovian approximat...
We provide a versatile analytical framework for calculating the dynamics of a spin system in contact...
Thermal rectification behaviors for some small quantum systems are studied by using the Lindblad mas...
We study the dynamics of heat flux in the thermalization process of a pair of identical quantum sys...
Why is thermalisation a universal phenomenon? How does a quantum system reach thermodynamical equili...
We study optimal control strategies to optimize the relaxation rate towards the fixed point of a qua...
A very fundamental problem in quantum statistical mechanics involves whether—and how—an isolated qua...
Recent work using tools from quantum information theory has shown that for small systems where quant...