arXiv · 0911.1371
Thermal conductance of the Fermi-Pasta-Ulam chains: Atomic to mesoscopic transition
Abstract
We demonstrate that in the atomic-scale limit the thermal conductance $\mathcal K$ of the FPU model and its variants strongly deviates from the mesoscopic behavior due to the relevance of contact resistance. As a result, atomic chains follow $\log \mathcal K = \nu \log T$, where the power law coefficient $\nu$ is exactly two times larger than the mesoscopic value. We smoothly interconnect the atomic and mesoscopic limits, and demonstrate that this turnover behavior takes place in other nonlinear FPU-like models. Our results are significant for nanoscale applications, manifesting an atomic thermal conductance with temperature scaling superior to the mesoscopic limit.
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Yelena Nicolin, Dvira Segal. 2009-11-06. Thermal conductance of the Fermi-Pasta-Ulam chains: Atomic to mesoscopic transition. https://doi.org/10.1103/physreve.81.040102
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