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首页> 外文期刊>Physical review. B, Condensed Matter And Materals Physics >Out-of-equilibrium dynamics and extended textures of topological defects in spin ice
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Out-of-equilibrium dynamics and extended textures of topological defects in spin ice

机译:旋转冰的失衡动力学和拓扑缺陷的扩展纹理

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摘要

Memory effects have been observed across a wide range of geometrically frustrated magnetic materials, possibly including Pr_2Ir_2O_7 where a spontaneous Hall effect has been observed. Frustrated magnets are also famous for the emergence of topological defects. Here we explore how the interaction between these defects can be responsible for a rich diversity of out-of-equilibrium dynamics, dominated by topological bottlenecks and multiscale energy barriers. Our model is an extension of the spinice model on the pyrochlore lattice, where farther-neighbor spin interactions give rise to a nearest-neighbor coupling between topological defects. This coupling can be chosen to be "unnatural" or not, i.e., attractive or repulsive between defects carrying the same topological charge. After applying a field quench, our model supports, for example, long-lived magnetization plateaux, and allows for the metastability of a "fragmented" spin liquid, an unconventional phase of matter where long-range order co-exists with a spin liquid. Perhaps most strikingly, the attraction between same-sign charges produces clusters of these defects in equilibrium, whose stability is due to a combination of energy and topological barriers. These clusters may take the form of a "jellyfish" spin texture, centered on a hexagonal ring with branches of arbitrary length. The ring carries a clockwise or counterclockwise circular flow of magnetization. This emergent toroidal degrees of freedom provide a possibility for time-reversal symmetry breaking with potential relevance to the spontaneous Hall effect observed in Pr_2Ir_2O_7.
机译:在各种各样的几何受挫的磁性材料中都观察到了记忆效应,可能包括Pr_2Ir_2O_7,在其中观察到了自发的霍尔效应。沮丧的磁体也因拓扑缺陷的出现而闻名。在这里,我们探讨了这些缺陷之间的相互作用如何导致大量的失衡动力学,这些失衡动力学主要由拓扑瓶颈和多尺度能垒构成。我们的模型是在烧绿石晶格上的spinice模型的扩展,在该模型中,更近邻的自旋相互作用引起拓扑缺陷之间的最近邻耦合。可以选择这种耦合为“非自然的”或不是“非自然的”,即在带有相同拓扑电荷的缺陷之间是吸引或排斥的。在施加场淬之后,我们的模型将支持例如长寿命的磁化平稳期,并允许“碎片化”的自旋液体的亚稳态,这是物质的非常规相,在该相中,长程有序分子与自旋液体共存。也许最引人注目的是,等号电荷之间的吸引力在平衡中产生了这些缺陷的簇,其缺陷是由于能量和拓扑屏障的结合而造成的。这些簇可以采取“水母”旋转纹理的形式,以带有任意长度分支的六边形环为中心。该环承载顺时针或逆时针的磁化圆形流。出现的环形自由度为逆转时间对称性提供了可能,并可能与Pr_2Ir_2O_7中观察到的自发霍尔效应有关。

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  • 来源
    《Physical review. B, Condensed Matter And Materals Physics》 |2016年第10期|104416.1-104416.24|共24页
  • 作者单位

    Department of Physics, Gakushuin University, Mejiro, Toshima-ku, Tokyo 171-8588, Japan;

    Okinawa Institute of Science and Technology Graduate University, Onna-son, Okinawa 904-0495, Japan;

    TCM group, Cavendish Laboratory, University of Cambridge, Cambridge, CB3 0HE, United Kingdom;

    Max Planck Institute for the Physics of Complex Systems, Nothnitzer Str. 38, D-01187 Dresden, Germany;

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