超快实验中瞬态序参量畴壁的命运

IF 5.4 1区 物理与天体物理 Q2 MATERIALS SCIENCE, MULTIDISCIPLINARY
Lingxian Kong, Ryuichi Shindou, Zhiyuan Sun
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引用次数: 0

摘要

在超快实验中,由于光在三维(3D)材料上的穿透深度有限,或者在二维(2D)材料上的光斑尺寸有限,光泵浦脉冲经常在具有自发对称性破缺的材料中产生阶参数的瞬态畴壁。我们证明了由于阶参量的不稳定波动而引起的畴壁衰减。我们研究了一类具有U(1)-对称阶的系统,以及那些在最近的实验中附加弱Z2 (U(1)-对称破缺)项的系统,它们代表了电荷密度波(CDW)阶。在衰变动力学的第一阶段,指数增长的热波动将畴壁转变为具有随机分布拓扑缺陷的界面。在第二阶段,拓扑缺陷在界面内经历一个粗化动力学过程。对于三维系统中的二维界面,动力学的粗化导致相关长度的扩散增长。对于具有弱Z2项的二维系统中的一维界面,相关长度增长表现出从扩散到次扩散的交叉行为。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Fate of transient order parameter domain walls in ultrafast experiments

Fate of transient order parameter domain walls in ultrafast experiments

In ultrafast experiments, an optical pump pulse often generates transient domain walls of the order parameter in materials with spontaneous symmetry breaking, due to either a finite penetration depth of light on a three-dimensional (3D) material, or a finite spot size on a two-dimensional (2D) material. We show that the domain wall decays due to unstable order parameter fluctuations. We study a generic system with U(1)-symmetric order, and those with an additional weak Z2 (U(1)-symmetry-breaking) term, representing the charge-density-wave (CDW) orders in recent experiments. During the first stage of the decay dynamics, exponentially growing thermal fluctuations convert the domain wall into an interface with randomly distributed topological defects. In the second stage, the topological defects undergo a coarsening dynamics within the interface. For a 2D interface in a 3D system, the coarsening dynamics leads to a diffusive growth of the correlation length. For a one-dimensional (1D) interface in a 2D system with the weak Z2 term, the correlation-length growth shows a crossover from diffusive to sub-diffusive behavior.

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来源期刊
npj Quantum Materials
npj Quantum Materials Materials Science-Electronic, Optical and Magnetic Materials
CiteScore
10.60
自引率
3.50%
发文量
107
审稿时长
6 weeks
期刊介绍: npj Quantum Materials is an open access journal that publishes works that significantly advance the understanding of quantum materials, including their fundamental properties, fabrication and applications.
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