论文标题

Fermi-Pasta-ulam-tsingou链中的异常传导和第二个声音:波动扰动方法

Anomalous conduction and second sound in the Fermi-Pasta-Ulam-Tsingou chain: wave-turbulence approach

论文作者

De Vita, Francesco, Dematteis, Giovanni, Mazzilli, Raffaele, Proment, Davide, Lvov, Yuri V., Onorato, Miguel

论文摘要

一维粒子链是解释纳米管和纳米线等低维固体中异常热传导的基本模型。在这些系统中,热能是由声子携带的,即通过非线性共振相互作用的晶格振荡。声子之间的平均能量传递由直接从微观动力学得出的波动力学方程(WKE)描述。在这里,我们使用了原型$β-$ fermi-pasta-ulam-tsingou(fput)模型的空间非均匀WKE,该模型配备了能够在两端设置不同温度的恒温器。我们的主要发现如下:(i)与微观动力学的已知结果密切一致的系统大小的电导率的异常缩放率是由于高和低波数之间的非平凡相互作用所致。 (ii)高波动的声子放松到局部热力学平衡,从而扩散地传输能量,{\ itàlafourier}。 (iii)低波动的声子几乎是非相互作用的,并且在弹道上传递了能量;后一种现象是第二个声发射的类似物,例如在超流体中观察到。

One-dimensional particle chains are fundamental models to explain anomalous thermal conduction in low-dimensional solids like nanotubes and nanowires. In these systems the thermal energy is carried by phonons, i.e. propagating lattice oscillations that interact via nonlinear resonance. The average energy transfer between the phonons is described by the wave kinetic equation (WKE), derived directly from the microscopic dynamics. Here, we use the spatially nonhomogeneous WKE of the prototypical $β-$ Fermi-Pasta-Ulam-Tsingou (FPUT) model, equipped with thermostats able to set different temperatures at the two ends. Our main findings are as follows: (i) The anomalous scaling of the conductivity with the system size, in close agreement with the known results from the microscopic dynamics, is due to a nontrivial interplay between high and low wavenumbers. (ii) The high-wavenumber phonons relax to local thermodynamic equilibrium transporting energy diffusively, {\it à la Fourier}. (iii) The low-wavenumber phonons are nearly noninteracting and transfer energy ballistically; this latter phenomenon is the analogous of the second sound emission, observed for example in superfluids.

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