论文标题

中尺度量子相变的出现在铁磁铁中

Emergence of mesoscale quantum phase transitions in a ferromagnet

论文作者

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

论文摘要

中尺度模式如观察到的,例如,在铁磁体,铁电,超导体,单分子膜或块聚合物中,反映了可以经典描述的长度和时间尺度上相关顺序参数的空间变化。这就提出了一个问题,即在零温度相跃迁(也称为量子相变(QPTS))附近的中尺度模式的相关性。在这里,我们报告了Lihof $ _4 $的磁化率 - 偶极的Ising Ferromagnet,靠近一个良好理解的横向场量子关键点(TF-QCP)。当将磁场倾斜从硬轴上倾斜以使Ising对称性始终被打破时,一系列定义明确的相变来自额外的对称性破坏的TF-QCP特征,与预期的显微镜相反。我们表明,在微观尺度上破裂的磁性iSing对称性环境中,对介质尺度上的翻译对称性的破坏是在微观尺度上的破坏对称性的,与易感性和温度依赖性的磁场依赖性和lihof $ _4 $ _4 $ _4 $ _4 $ _4 $ _4 $ _4 $ _4的磁性相图具有出色的定性和定量一致性。这确定了一种新型的相变类型,可以称为Mesocale量子关键性,该量子从微观铁磁TF-QCP的教科书示例中得出。我们的结果将QPT的周围环境确定为中尺度模式形成的制度,其中可能会预期非分析量子动力学和材料特性。

Mesoscale patterns as observed, e.g., in ferromagnets, ferroelectrics, superconductors, mono-molecular films, or block-copolymers, reflect spatial variations of a pertinent order parameter at length- 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 (QPTs). Here we report the magnetic susceptibility of LiHoF$_4$ -- 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 an additional symmetry breaking, in stark contrast to a crossover expected microscopically. We show that 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$_4$ under tilted field. This identifies a new type of phase transition that may be referred to as mesocale quantum criticality, which emanates from the text-book example of a microscopic ferromagnetic TF-QCP. Our results establish the surroundings of QPTs as a regime of mesoscale pattern formation, where non-analytical quantum dynamics and materials properties without classical analogue may be expected.

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