We study the charge conductivity in one-dimensional prototype models of interacting particles, such as the Hubbard and the t-V spinless fermion models, when coupled to some external baths injecting and extracting particles at the boundaries. We show that, if these systems are driven far from equilibrium, a negative differential conductivity regime can arise. The above electronic models can be mapped into Heisenberg-like spin ladders coupled to two magnetic baths, so that charge transport mechanisms are explained in terms of quantum spin transport. The negative differential conductivity is due to oppositely polarized ferromagnetic domains that arise at the edges of the chain and therefore inhibit spin transport: we propose a qualitative unde...
We study experimentally the far-from-equilibrium dynamics in ferromagnetic Heisenberg quantum magnet...
International audienceWe identify a class of one-dimensional spin and fermionic lattice models that ...
The problem of spin-charge separation is addressed by considering current carrying states in a one-...
We study the charge conductivity in one-dimensional prototype models of interacting particles, such ...
We study the charge conductivity in one-dimensional prototype models of interacting particles, such ...
We show that, when a finite anisotropic Heisenberg spin-1/2 chain in the gapped regime is driven far...
In integrable one-dimensional quantum systems an infinite set of local conserved quantities exists w...
We analyze the spin transport through a finite-size one-dimensional interacting wire connected to no...
We investigate the spin transport properties of an isotropic quantum Heisenberg spin-chain. Driving ...
We review some recent results from the mathematical theory of transport of charge and spin in gapped...
We study the non-equilibrium transport properties of a highly anisotropic twodimensional lattice of ...
We identify a class of one-dimensional spin and fermionic lattice models which display diverging spi...
The Chapter 2 is devoted to the study of the transport properties of a quantum wire, described by th...
We present numerical results for the spin and thermal conductivity of one-dimensional (1D) quantum s...
We calculate the conductance through Aharonov-Bohm chain and ladder rings pierced by a magnetic flux...
We study experimentally the far-from-equilibrium dynamics in ferromagnetic Heisenberg quantum magnet...
International audienceWe identify a class of one-dimensional spin and fermionic lattice models that ...
The problem of spin-charge separation is addressed by considering current carrying states in a one-...
We study the charge conductivity in one-dimensional prototype models of interacting particles, such ...
We study the charge conductivity in one-dimensional prototype models of interacting particles, such ...
We show that, when a finite anisotropic Heisenberg spin-1/2 chain in the gapped regime is driven far...
In integrable one-dimensional quantum systems an infinite set of local conserved quantities exists w...
We analyze the spin transport through a finite-size one-dimensional interacting wire connected to no...
We investigate the spin transport properties of an isotropic quantum Heisenberg spin-chain. Driving ...
We review some recent results from the mathematical theory of transport of charge and spin in gapped...
We study the non-equilibrium transport properties of a highly anisotropic twodimensional lattice of ...
We identify a class of one-dimensional spin and fermionic lattice models which display diverging spi...
The Chapter 2 is devoted to the study of the transport properties of a quantum wire, described by th...
We present numerical results for the spin and thermal conductivity of one-dimensional (1D) quantum s...
We calculate the conductance through Aharonov-Bohm chain and ladder rings pierced by a magnetic flux...
We study experimentally the far-from-equilibrium dynamics in ferromagnetic Heisenberg quantum magnet...
International audienceWe identify a class of one-dimensional spin and fermionic lattice models that ...
The problem of spin-charge separation is addressed by considering current carrying states in a one-...