We study the spin and thermal conductivity of spin-12 ladders and chains at finite temperature, relevant for experiments with quantum magnets. Using a state-of-the-art density matrix renormalization group algorithm, we compute the current autocorrelation functions on the real-time axis and then carry out a Fourier integral to extract the frequency dependence of the corresponding conductivities. The finite-time error is analyzed carefully. We first investigate the limiting case of spin-12 XXZ chains, for which our analysis suggests nonzero dc conductivities in all interacting cases irrespective of the presence or absence of spin Drude weights. For ladders, we observe that all models studied are normal conductors with no ballistic contributio...
We illustrate how finite-temperature charge and thermal Drude weights of one- dimensional systems c...
We set up a framework in which controlled lower bounds to conductivities of strongly correlated quan...
For a quantum spin chain or 1D fermionic system, we prove that the Drude weight D verifies the univ...
This thesis studies transport properties of low-dimensional quantum spin systems with a particular f...
We analyze the thermal conductivity of anisotropic and frustrated spin-1/2 chains using analytical a...
We analyze the spin transport through a finite-size one-dimensional interacting wire connected to no...
We study the dynamics of spin currents in the spin-$\frac{1}{2}$ XX ladder at finite temperature. Wi...
We study thermal transport in one dimensional spin systems both in the presence and absence of impur...
Transport properties provide important information about the mobility, elastic and inelastic of scat...
A Comment on the Letter by J.V. Alvarez and Claudius Gros, Phys. Rev. Lett. 89, 156603 (2002). The a...
We present numerical results for the spin and thermal conductivity of one-dimensional (1D) quantum s...
We present a temperature and magnetic field dependence study of spin transport and magnetothermal co...
We study the thermal transport of a spin-1/2 two leg antiferromagnetic ladder in the direction of le...
Integrable models such as the spin-1/2 Heisenberg chain, the Lieb-Liniger, or the one-dimensional H...
[[abstract]]The single-rung t-J ladder is investigated based on the charge-spin separation fermion-s...
We illustrate how finite-temperature charge and thermal Drude weights of one- dimensional systems c...
We set up a framework in which controlled lower bounds to conductivities of strongly correlated quan...
For a quantum spin chain or 1D fermionic system, we prove that the Drude weight D verifies the univ...
This thesis studies transport properties of low-dimensional quantum spin systems with a particular f...
We analyze the thermal conductivity of anisotropic and frustrated spin-1/2 chains using analytical a...
We analyze the spin transport through a finite-size one-dimensional interacting wire connected to no...
We study the dynamics of spin currents in the spin-$\frac{1}{2}$ XX ladder at finite temperature. Wi...
We study thermal transport in one dimensional spin systems both in the presence and absence of impur...
Transport properties provide important information about the mobility, elastic and inelastic of scat...
A Comment on the Letter by J.V. Alvarez and Claudius Gros, Phys. Rev. Lett. 89, 156603 (2002). The a...
We present numerical results for the spin and thermal conductivity of one-dimensional (1D) quantum s...
We present a temperature and magnetic field dependence study of spin transport and magnetothermal co...
We study the thermal transport of a spin-1/2 two leg antiferromagnetic ladder in the direction of le...
Integrable models such as the spin-1/2 Heisenberg chain, the Lieb-Liniger, or the one-dimensional H...
[[abstract]]The single-rung t-J ladder is investigated based on the charge-spin separation fermion-s...
We illustrate how finite-temperature charge and thermal Drude weights of one- dimensional systems c...
We set up a framework in which controlled lower bounds to conductivities of strongly correlated quan...
For a quantum spin chain or 1D fermionic system, we prove that the Drude weight D verifies the univ...