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铁磁体中中尺度量子相变的出现。

Emergence of mesoscale quantum phase transitions in a ferromagnet.

作者信息

Wendl Andreas, Eisenlohr Heike, Rucker Felix, Duvinage Christopher, Kleinhans Markus, Vojta Matthias, Pfleiderer Christian

机构信息

Physik-Department, Technische Universität München, Garching, Germany.

Institut für Theoretische Physik and Würzburg-Dresden Cluster of Excellence ct.qmat, Technische Universität Dresden, Dresden, Germany.

出版信息

Nature. 2022 Sep;609(7925):65-70. doi: 10.1038/s41586-022-04995-5. Epub 2022 Aug 31.

DOI:10.1038/s41586-022-04995-5
PMID:36045242
Abstract

Mesoscale patterns as observed in, for example, ferromagnets, ferroelectrics, superconductors, monomolecular films or block copolymers reflect spatial variations of a pertinent order parameter at length scales and time scales that may be described classically. This raises the question for the relevance of mesoscale patterns near zero-temperature phase transitions, also known as quantum phase transitions. Here we report the magnetic susceptibility of LiHoF-a dipolar Ising ferromagnet-near a well-understood transverse-field quantum critical point (TF-QCP). When tilting the magnetic field away from the hard axis such that the Ising symmetry is always broken, a line of well-defined phase transitions emerges from the TF-QCP, characteristic of further symmetry breaking, in stark contrast to a crossover expected microscopically. We show that the scenario of a continuous suppression of ferromagnetic domains, representing a breaking of translation symmetry on mesoscopic scales in an environment of broken magnetic Ising symmetry on microscopic scales, is in excellent qualitative and quantitative agreement with the field and temperature dependence of the susceptibility and the magnetic phase diagram of LiHoF under tilted field. This identifies a new type of phase transition that may be referred to as mesoscale quantum criticality, which emanates from the textbook example of a microscopic ferromagnetic TF-QCP. Our results establish the surroundings of quantum phase transitions as a regime of mesoscale pattern formation, in which non-analytical quantum dynamics and materials properties without classical analogue may be expected.

摘要

例如在铁磁体、铁电体、超导体、单分子膜或嵌段共聚物中观察到的中尺度模式,反映了在经典描述的长度尺度和时间尺度上相关序参量的空间变化。这就引出了关于接近零温度相变(也称为量子相变)的中尺度模式相关性的问题。在这里,我们报告了LiHoF(一种偶极伊辛铁磁体)在一个已充分理解的横向场量子临界点(TF-QCP)附近的磁化率。当将磁场从硬轴倾斜,使得伊辛对称性始终被打破时,从TF-QCP出现了一系列定义明确的相变,这是进一步对称性破缺的特征,与微观上预期的交叉现象形成鲜明对比。我们表明,在微观尺度上磁伊辛对称性被打破的环境中,铁磁畴的连续抑制这一情景,代表了介观尺度上平移对称性的破缺,与倾斜场下LiHoF的磁化率的场和温度依赖性以及磁相图在定性和定量上都非常吻合。这确定了一种新型的相变,可称为中尺度量子临界性,它源自微观铁磁TF-QCP的教科书示例。我们的结果将量子相变的周围环境确立为中尺度模式形成的一个区域,在其中可能会出现没有经典类似物的非解析量子动力学和材料特性。

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