论文标题

表面固定在提交给外部DC场的电荷密度波的动力学中的基本作用

The essential role of surface pinning in the dynamics of charge density waves submitted to external dc fields

论文作者

Bellec, E., Jacques, V. L. R., Caillaux, J., Bolloc'h, D. Le

论文摘要

提交到电场的电荷密度波(CDW)由于固定在样品的侧面表面而显示出较强的剪切变形。最近观察到了这种CDW横向钉,但从理论的角度来看,尽管对电导率的重要后果,但从理论上的角度几乎没有关注。在这里,我们通过考虑提交给外部直流电场的CDW来提供对这种现象的描述,并受到边界条件的约束,包括由于电触点和横向表面钉的纵向钉。使用绿色函数和图像电荷方法,在3D中获得了CDW相的简单公式。另外,通过考虑相滑过程,可以获得阈值场对长度和样品横截面的分析表达。我们表明,该模型可以很好地再现实验数据,并且可以忽略大量固定。这项研究表明,尽管样品体积相对较大,但CDW系统的动力学特性可能主要是由边界效应驱动的。

A Charge Density Wave (CDW) submitted to an electric field displays a strong shear deformation because of pinning at the lateral surfaces of the sample. This CDW transverse pinning was recently observed but has received little attention from a theoretical point of view until now despite important consequences on electrical conductivity properties. Here, we provide a description of this phenomenon by considering a CDW submitted to an external dc electric field and constrained by boundary conditions including both longitudinal pinning due to electrical contacts and transverse surface pinning. A simple formula for the CDW phase is obtained in 3D by using the Green function and image charges method. In addition, an analytical expression of the threshold field dependence on both length and sample cross section is obtained by considering the phase slip process. We show that the experimental data are well reproduced with this model and that bulk pinning can be neglected. This study shows that the dynamical properties of CDW systems could be mainly driven by boundary effects, despite the comparatively huge sample volumes.

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