Chain-mapping techniques in combination with the time-dependent density matrix renormalization group are a powerful tool for the simulation of open-system quantum dynamics. For finite-temperature environments, however, this approach suffers from an unfavorable algorithmic scaling with increasing temperature. We prove that the system dynamics under thermal environments can be nonperturbatively described by temperature-dependent system-environmental couplings with the initial environment state being in its pure vacuum state, instead of a mixed thermal state. As a consequence, as long as the initial system state is pure, the global system-environment state remains pure at all times. The resulting speed-up and relaxed memory requirements of thi...
Identifying which master equation is preferable for the description of a multipartite open quantum s...
We study measures of decoherence and thermalization of a quantum system S in the presence of a quant...
The central challenge for describing the dynamics in open quantum systems is that the Hilbert space ...
We introduce a method “DMT” for approximating density operators of 1D systems that, when combined wi...
In this work, we combine an established method for open quantum systems—the time evolving density ma...
We acknowledge support from the European Research Council Starting Grant ODYSSEY (Grant No. G. A. 75...
In this work, we show how Gibbs or thermal states appear dynamically in closed quantum many-body sys...
We extend the coupled-cluster method to correlated quantum dynamics of both closed and open systems ...
The Lindblad theory of open quantum systems has been successfully applied in various fields ranging ...
In this thesis we have addressed some open questions on the out-of-equilibrium dynamics of closed on...
Funding: M. Co. and V. M. A. are grateful for funding by the Deutsche Forschungsgemeinschaft (DFG, G...
We introduce an exact open system method to describe the dynamics of quantum systems that are strong...
Tracing out the environmental degrees of freedom is a necessary procedure when simulating open quant...
We show how to simulate numerically the evolution of 1D quantum systems under dissipation as well as...
We investigate the equilibration and thermalization properties of quantum systems interacting with a...
Identifying which master equation is preferable for the description of a multipartite open quantum s...
We study measures of decoherence and thermalization of a quantum system S in the presence of a quant...
The central challenge for describing the dynamics in open quantum systems is that the Hilbert space ...
We introduce a method “DMT” for approximating density operators of 1D systems that, when combined wi...
In this work, we combine an established method for open quantum systems—the time evolving density ma...
We acknowledge support from the European Research Council Starting Grant ODYSSEY (Grant No. G. A. 75...
In this work, we show how Gibbs or thermal states appear dynamically in closed quantum many-body sys...
We extend the coupled-cluster method to correlated quantum dynamics of both closed and open systems ...
The Lindblad theory of open quantum systems has been successfully applied in various fields ranging ...
In this thesis we have addressed some open questions on the out-of-equilibrium dynamics of closed on...
Funding: M. Co. and V. M. A. are grateful for funding by the Deutsche Forschungsgemeinschaft (DFG, G...
We introduce an exact open system method to describe the dynamics of quantum systems that are strong...
Tracing out the environmental degrees of freedom is a necessary procedure when simulating open quant...
We show how to simulate numerically the evolution of 1D quantum systems under dissipation as well as...
We investigate the equilibration and thermalization properties of quantum systems interacting with a...
Identifying which master equation is preferable for the description of a multipartite open quantum s...
We study measures of decoherence and thermalization of a quantum system S in the presence of a quant...
The central challenge for describing the dynamics in open quantum systems is that the Hilbert space ...