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在极 Meron 到 Skyrmion 相变中出现的紧急手性。

Emergent chirality in a polar meron to skyrmion phase transition.

机构信息

School of Applied and Engineering Physics, Cornell University, Ithaca, NY, USA.

Mork Family Department of Chemical Engineering and Materials Science, University of Southern California, Los Angeles, CA, USA.

出版信息

Nat Commun. 2023 Mar 13;14(1):1355. doi: 10.1038/s41467-023-36950-x.

Abstract

Polar skyrmions are predicted to emerge from the interplay of elastic, electrostatic and gradient energies, in contrast to the key role of the anti-symmetric Dzyalozhinskii-Moriya interaction in magnetic skyrmions. Here, we explore the reversible transition from a skyrmion state (topological charge of -1) to a two-dimensional, tetratic lattice of merons (with topological charge of -1/2) upon varying the temperature and elastic boundary conditions in [(PbTiO)/(SrTiO)] membranes. This topological phase transition is accompanied by a change in chirality, from zero-net chirality (in meronic phase) to net-handedness (in skyrmionic phase). We show how scanning electron diffraction provides a robust measure of the local polarization simultaneously with the strain state at sub-nm resolution, while also directly mapping the chirality of each skyrmion. Using this, we demonstrate strain as a crucial order parameter to drive isotropic-to-anisotropic structural transitions of chiral polar skyrmions to non-chiral merons, validated with X-ray reciprocal space mapping and phase-field simulations.

摘要

极性斯格明子被预测是由弹性、静电和梯度能相互作用而产生的,这与磁斯格明子中反称的 Dzyalozhinskii-Moriya 相互作用的关键作用形成对比。在这里,我们研究了在 [(PbTiO)/(SrTiO)] 薄膜中改变温度和弹性边界条件时,从斯格明子态(拓扑电荷为-1)到二维四元晶格的梅尔恩斯(拓扑电荷为-1/2)的可逆转变。这种拓扑相变伴随着手性的变化,从零净手性(在梅尔恩斯相中)到手性(在斯格明子相中)。我们展示了扫描电子衍射如何在亚纳米分辨率下同时提供对局部极化和应变状态的稳健测量,同时还直接映射每个斯格明子的手性。利用这一点,我们证明了应变是一个关键的序参量,可以驱动手性极性斯格明子到非手性梅尔恩斯的各向同性到各向异性结构转变,这一点通过 X 射线倒空间映射和相场模拟得到了验证。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6414/10008831/7b450a7894fb/41467_2023_36950_Fig1_HTML.jpg

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