We study the energy transport between two interacting spin chains which are initially separated, held at different temperatures, and subsequently put in contact. We consider the spin-1/2 XXZ model in the gapless regime and exploit its integrability properties to formulate an analytical ansatz for the nonequilibrium steady state even at temperatures where the low-energy Luttinger liquid description is not accurate. We apply our method to compute the steady energy current and benchmark it both with the known low-energy limit and at higher temperatures with numerical simulations. We find an excellent agreement even at high temperatures, where the Luttinger liquid prediction is shown to fail
In this work we study the heat transport in an XXZ spin-1/2 Heisenberg chain with homogeneous magnet...
We study the energy transport in a system of two half-infinite XXZ chains initially kept separated a...
We study the low-temperature transport properties of out-of-equilibrium XXZ spin-1/2 chains. We cons...
We study the energy transport between two interacting spin chains which are initially separated, hel...
We study the energy transport between two interacting spin chains which are initially separated, hel...
We study the energy transport between two interacting spin chains which are initially separated, hel...
We study the low-temperature transport properties of out-of-equilibrium XXZ spin-1/2 chains. We cons...
We study the low-temperature transport properties of out-of equilibrium XXZ spin-1/2 chains. We cons...
We study the energy transport in a system of two half-infinite XXZ chains initially kept separated a...
We study the energy transport in a system of two half-infinite XXZ chains initially kept separated a...
We study the energy transport in a system of two half-infinite XXZ chains initially kept separated a...
In this work we study the heat transport in an XXZ spin-1/2 Heisenberg chain with homogeneous magnet...
International audienceWe consider the nonequilibrium time evolution of piecewise homogeneous states ...
We consider the nonequilibrium time evolution of piecewise homogeneous states in the XXZ spin-1/2 ch...
International audienceWe consider the nonequilibrium time evolution of piecewise homogeneous states ...
In this work we study the heat transport in an XXZ spin-1/2 Heisenberg chain with homogeneous magnet...
We study the energy transport in a system of two half-infinite XXZ chains initially kept separated a...
We study the low-temperature transport properties of out-of-equilibrium XXZ spin-1/2 chains. We cons...
We study the energy transport between two interacting spin chains which are initially separated, hel...
We study the energy transport between two interacting spin chains which are initially separated, hel...
We study the energy transport between two interacting spin chains which are initially separated, hel...
We study the low-temperature transport properties of out-of-equilibrium XXZ spin-1/2 chains. We cons...
We study the low-temperature transport properties of out-of equilibrium XXZ spin-1/2 chains. We cons...
We study the energy transport in a system of two half-infinite XXZ chains initially kept separated a...
We study the energy transport in a system of two half-infinite XXZ chains initially kept separated a...
We study the energy transport in a system of two half-infinite XXZ chains initially kept separated a...
In this work we study the heat transport in an XXZ spin-1/2 Heisenberg chain with homogeneous magnet...
International audienceWe consider the nonequilibrium time evolution of piecewise homogeneous states ...
We consider the nonequilibrium time evolution of piecewise homogeneous states in the XXZ spin-1/2 ch...
International audienceWe consider the nonequilibrium time evolution of piecewise homogeneous states ...
In this work we study the heat transport in an XXZ spin-1/2 Heisenberg chain with homogeneous magnet...
We study the energy transport in a system of two half-infinite XXZ chains initially kept separated a...
We study the low-temperature transport properties of out-of-equilibrium XXZ spin-1/2 chains. We cons...