Using Lindblad dynamics we study quantum spin systems with dissipative boundary dynamics that generate a stationary nonequilibrium state with a nonvanishing spin current that is locally conserved except at the boundaries. We demonstrate that with suitably chosen boundary target states one can solve the many-body Lindblad equation exactly in any dimension. As solution we obtain pure states at any finite value of the dissipation strength and any system size. They are characterized by a helical stationary magnetization profile and a ballistic spin current which is independent of system size, even when the quantum spin system is not integrable. These results are derived in explicit form for the one-dimensional spin-1/2 Heisenberg chain and its ...
We construct exact steady states of unitary nonequilibrium time evolution in the gapless XXZ spin-1/...
We study a XY model which consists of a spin chain coupled to heat baths. We give a repeated quantu...
The behavior of the magnetic currents in one-dimensional Heisenberg XXZ spin chains kept out of equi...
We introduce families of one-dimensional Lindblad equations describing open many-particle quantum sy...
The theory of open quantum systems, i.e. physical systems coupled to an environment with which they ...
We investigate the non-equilibrium steady state (NESS) in an open quantum XXZ chain attached at the ...
We analyze a XXZ spin-1/2 chain which is driven dissipatively at its boundaries. The dissipative dri...
Abstract. We study quantum transport properties of an open Heisenberg XXZ spin 1/2 chain driven by a...
We investigate the spin transport properties of an isotropic quantum Heisenberg spin-chain. Driving ...
We consider the open isotropic spin-1/2 Heisenberg quantum spin chain with a finite number N of site...
The Lindblad master equation is one of the main approaches to open quantum systems. While it has bee...
AbstractWe present an explicit construction of a family of steady state density matrices for an open...
International audienceThe Lindblad dynamics of the XX quantum chain with large random fields $h_j$ (...
We present an explicit construction of a family of steady state density matrices for an open integra...
We investigate a dissipatively driven XYZ spin-1/2 chain in the Zeno limit of strong dissipation, de...
We construct exact steady states of unitary nonequilibrium time evolution in the gapless XXZ spin-1/...
We study a XY model which consists of a spin chain coupled to heat baths. We give a repeated quantu...
The behavior of the magnetic currents in one-dimensional Heisenberg XXZ spin chains kept out of equi...
We introduce families of one-dimensional Lindblad equations describing open many-particle quantum sy...
The theory of open quantum systems, i.e. physical systems coupled to an environment with which they ...
We investigate the non-equilibrium steady state (NESS) in an open quantum XXZ chain attached at the ...
We analyze a XXZ spin-1/2 chain which is driven dissipatively at its boundaries. The dissipative dri...
Abstract. We study quantum transport properties of an open Heisenberg XXZ spin 1/2 chain driven by a...
We investigate the spin transport properties of an isotropic quantum Heisenberg spin-chain. Driving ...
We consider the open isotropic spin-1/2 Heisenberg quantum spin chain with a finite number N of site...
The Lindblad master equation is one of the main approaches to open quantum systems. While it has bee...
AbstractWe present an explicit construction of a family of steady state density matrices for an open...
International audienceThe Lindblad dynamics of the XX quantum chain with large random fields $h_j$ (...
We present an explicit construction of a family of steady state density matrices for an open integra...
We investigate a dissipatively driven XYZ spin-1/2 chain in the Zeno limit of strong dissipation, de...
We construct exact steady states of unitary nonequilibrium time evolution in the gapless XXZ spin-1/...
We study a XY model which consists of a spin chain coupled to heat baths. We give a repeated quantu...
The behavior of the magnetic currents in one-dimensional Heisenberg XXZ spin chains kept out of equi...