论文标题

通过非线性界面接近完美的二极管限制

Approaching the perfect diode limit through a nonlinear interface

论文作者

Defaveri, Lucianno, Almeida, Alexandre A. A., Anteneodo, Celia

论文摘要

我们考虑了一个由两个不同片段的颗粒形成的系统,该系统与热浴耦合,一个在每端,由Langevin恒温器建模。每个段中的粒子均匀相互作用,并受到现场电位的影响,其中考虑了三种不同类型的元素,即谐波,$ ϕ^4 $和Frenkel-Kontorova。这两个节段是非线性耦合的,在界面粒子之间,通过幂律电位,具有指数$μ$,我们对此有所不同,从次谐波到超谐音电位,直到无限 - 平方英尺,到无限 - 平方英尺的限制($μ\ \ \ fos f infty $)。通过整合运动方程并计算热通量来研究热矫正。作为纠正量的量度,我们使用浴室反转导致的电流的差,除以它们的平均值。我们发现,可以通过$μ$的给定值来优化纠正,这取决于浴缸温度和链条的细节。但是,无论考虑到什么类型的现场电位,产生最大整流的界面电势都可以在降低浴缸的平均温度时,无限平方孔($μ\ to \ infty $)。我们对热矫正的分析重点是这种制度,为此,我们将数值结果与启发式方面相辅相成。

We consider a system formed by two different segments of particles, coupled to thermal baths, one at each end, modeled by Langevin thermostats. The particles in each segment interact harmonically and are subject to an on-site potential, for which, three different types are considered, namely, harmonic, $ϕ^4$, and Frenkel-Kontorova. The two segments are nonlinearly coupled, between interfacial particles, by means of a power-law potential, with exponent $μ$, which we vary, scanning from subharmonic to superharmonic potentials, up to the infinite-square-well limit ($μ\to\infty$). Thermal rectification is investigated by integrating the equations of motion and computing the heat fluxes. As a measure of rectification, we use the difference of the currents resulting from baths inversion, divided by their average. We find that rectification can be optimized by a given value of $μ$ that depends on the bath temperatures and details of the chains. But, regardless of the type of on-site potential considered, the interfacial potential that produces maximal rectification approaches the infinite-square-well ($μ\to\infty$), when reducing the average temperature of the baths. Our analysis of thermal rectification focuses on this regime, for which we complement numerical results with heuristic considerations.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源