English

Heat transport in oscillator chains with long-range interactions coupled to thermal reservoirs

Statistical Mechanics 2018-03-14 v1

Abstract

We investigate thermal conduction in arrays of long-range interacting rotors and Fermi-Pasta-Ulam (FPU) oscillators coupled to two reservoirs at different temperatures. The strength of the interaction between two lattice sites decays as a power α\alpha of the inverse of their distance. We point out the necessity of distinguishing between energy flows towards/from the reservoirs and those within the system. We show that energy flow between the reservoirs occurs via a direct transfer induced by long-range couplings and a diffusive process through the chain. To this aim, we introduce a decomposition of the steady-state heat current that explicitly accounts for such direct transfer of energy between the reservoir. For 0α<10\leq \alpha<1, the direct transfer term dominates, meaning that the system can be effectively described as a set of oscillators each interacting with the thermal baths. Also, the heat current exchanged with the reservoirs depends on the size of the thermalised regions: in the case in which such size is proportional to the system size NN, the stationary current is independent on NN. For α>1\alpha > 1, heat transport mostly occurs through diffusion along the chain: for the rotors transport is normal, while for FPU the data are compatible with an anomalous diffusion, possibly with an α\alpha -dependent characteristic exponent.

Keywords

Cite

@article{arxiv.1712.07979,
  title  = {Heat transport in oscillator chains with long-range interactions coupled to thermal reservoirs},
  author = {Stefano Iubini and Pierfrancesco Di Cintio and Stefano Lepri and Roberto Livi and Lapo Casetti},
  journal= {arXiv preprint arXiv:1712.07979},
  year   = {2018}
}