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蜂窝状螺旋自旋液体候选物中的巡游和拓扑激发

Itinerant and topological excitations in a honeycomb spiral spin liquid candidate.

作者信息

Zhao Yuqian, Yao Xuping, Chen Xun, Wan Zongtang, Ma Zhaohua, Hong Xiaochen, Li Yuesheng

机构信息

Wuhan National High Magnetic Field Center and School of Physics, Huazhong University of Science and Technology, Wuhan, China.

Kavli Institute for Theoretical Sciences, University of Chinese Academy of Sciences, Beijing, China.

出版信息

Nat Commun. 2025 Sep 25;16(1):8410. doi: 10.1038/s41467-025-63620-x.

Abstract

The frustrated insulating magnet can stabilize a spiral spin liquid, arising from cooperative fluctuations among a subextensively degenerate manifold of spiral configurations, with ground-state wave vectors forming a continuous contour or surface in reciprocal space. The atomic-mixing-free honeycomb antiferromagnet GdZnPO has recently emerged as a promising spiral spin-liquid candidate, hosting nontrivial topological excitations. Despite growing interest, the transport and topological properties of spiral spin liquids remain largely unexplored experimentally. Here, we report transport measurements on high-quality, electrically insulating GdZnPO single crystals. We observe a giant low-temperature magnetic thermal conductivity down to ~ 50 mK, described by , where both κ and κ are positive constants associated with excitations along and off the spiral contour in reciprocal space, respectively. This behavior parallels the magnetic specific heat, underscoring the presence of mobile low-energy excitations intrinsic to the putative spiral spin liquid. Furthermore, the observed positive thermal Hall effect confirms the topological nature of at least some of these excitations. Our findings provide key insights into the itinerant and topological properties of low-lying spin excitations in the spiral spin-liquid candidate.

摘要

受挫绝缘磁体可以稳定一种螺旋自旋液体,这种液体源于螺旋构型的亚广延简并流形之间的协同涨落,其基态波矢在倒易空间中形成连续的轮廓或曲面。无原子混合的蜂窝状反铁磁体GdZnPO最近成为一种有前景的螺旋自旋液体候选物,具有非平凡的拓扑激发。尽管人们的兴趣日益浓厚,但螺旋自旋液体的输运和拓扑性质在实验上仍 largely 未被探索。在这里,我们报告了对高质量电绝缘GdZnPO单晶的输运测量。我们观察到在低至约50 mK的温度下有巨大的低温磁热导率,由 描述,其中κ 和 κ 分别是与倒易空间中沿螺旋轮廓和偏离螺旋轮廓的激发相关的正的常数。这种行为与磁比热相似,突出了假定的螺旋自旋液体固有的低能可移动激发的存在。此外,观察到的正热霍尔效应证实了这些激发中至少有一些的拓扑性质。我们的发现为螺旋自旋液体候选物中低能自旋激发的巡游和拓扑性质提供了关键见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/56ec/12462435/f098668fb776/41467_2025_63620_Fig1_HTML.jpg

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