It is shown numerically that for Fermi-Pasta-Ulam (FPU) chains with alternating masses and heat baths at slightly different temperatures at the ends, the local temperature (LT) on small scales behaves paradoxically in steady state. This expands the long established problem of equilibration of FPU chains. A well-behaved LT appears to be achieved for equal mass chains; the thermal conductivity is shown to diverge with chain length N as N⅓, relevant for the much debated question of the universality of one-dimensional heat conduction. The reason why earlier simulations have obtained systematically higher exponents is explained
Local thermodynamic equilibrium(LTE) plays a crucial role in statistical mechanics and thermodynamic...
We numerically study heat conduction in chains of nonlinear oscillators with time-reversible thermos...
Local thermodynamic equilibrium(LTE) plays a crucial role in statistical mechanics and thermodynamic...
Open Access. Includes a reply by the authors to the comment by Luca Delfini et al..It is shown nume...
We conduct a comprehensive and systematic study of the Fermi-Pasta-Ulam (FPU) model using both equil...
Open AccessWe address the question of the effect of disorder on heat conduction in an anharmonic cha...
Restricted Access. An open-access version is available at arXiv.org (one of the alternative location...
Commonly, thermal transport properties of one-dimensional systems are found to be anomalous. Here, w...
Commonly, thermal transport properties of one-dimensional systems are found to be anomalous. Here, w...
It is usually assumed, in classical statistical mechanics, that the temperature should coincide, apa...
Commonly, thermal transport properties of one-dimensional systems are found to be anomalous. Here, w...
The linear response to temperature variations is well characterised for equilibrium systems but a si...
A crucial assumption in the conventional description of thermal conduction is the existence of local...
The linear response to temperature variations is well characterised for equilibrium systems but a si...
We numerically study heat conduction in a few one-dimensional Fermi-Pasta-Ulam (FPU)-type lattices b...
Local thermodynamic equilibrium(LTE) plays a crucial role in statistical mechanics and thermodynamic...
We numerically study heat conduction in chains of nonlinear oscillators with time-reversible thermos...
Local thermodynamic equilibrium(LTE) plays a crucial role in statistical mechanics and thermodynamic...
Open Access. Includes a reply by the authors to the comment by Luca Delfini et al..It is shown nume...
We conduct a comprehensive and systematic study of the Fermi-Pasta-Ulam (FPU) model using both equil...
Open AccessWe address the question of the effect of disorder on heat conduction in an anharmonic cha...
Restricted Access. An open-access version is available at arXiv.org (one of the alternative location...
Commonly, thermal transport properties of one-dimensional systems are found to be anomalous. Here, w...
Commonly, thermal transport properties of one-dimensional systems are found to be anomalous. Here, w...
It is usually assumed, in classical statistical mechanics, that the temperature should coincide, apa...
Commonly, thermal transport properties of one-dimensional systems are found to be anomalous. Here, w...
The linear response to temperature variations is well characterised for equilibrium systems but a si...
A crucial assumption in the conventional description of thermal conduction is the existence of local...
The linear response to temperature variations is well characterised for equilibrium systems but a si...
We numerically study heat conduction in a few one-dimensional Fermi-Pasta-Ulam (FPU)-type lattices b...
Local thermodynamic equilibrium(LTE) plays a crucial role in statistical mechanics and thermodynamic...
We numerically study heat conduction in chains of nonlinear oscillators with time-reversible thermos...
Local thermodynamic equilibrium(LTE) plays a crucial role in statistical mechanics and thermodynamic...