论文标题

蜂窝状晶格中无间隙量子自旋液体的证据

Evidence for gapless quantum spin liquid in a honeycomb lattice

论文作者

Tu, Chengpeng, Dai, Dongzhe, Zhang, Xu, Zhao, Chengcheng, Jin, Xiaobo, Gao, Bin, Chen, Tong, Dai, Pengcheng, Li, Shiyan

论文摘要

当前冷凝物理物理学的一个主要主题是搜索量子旋转液体(QSL),量子旋转液体(QSL)是一种异国情调的磁性状态,具有强烈裂开的且高度插入的旋转至零温度,而无需静态顺序。但是,到目前为止,在任何实际材料中,QSL基态存在尚无共识。疾病和竞争交流相互作用可能会阻止在沮丧的旋转晶格上形成理想的QSL状态。在这里,我们报告了在蜂窝晶状体化合物BACO2(ASO4)2上进行系统的热传输测量,该测量在零场中表现出磁性。在狭窄的磁场范围内,磁序几乎被平面场抑制,在垂直方向和平行于Zigzag方向时,明确观察到了有限的导热电导率的有限残留线性线性项,这归因于移动分数化的Spinon激发。这为BACO2(ASO4)2中无间隙QSL状态提供了吸烟枪证据。我们讨论了在CO2+ Honeycomb晶格中形成这种异国无间隙QSL状态的潜在物理学。

One main theme in current condensed matter physics is the search of quantum spin liquid (QSL), an exotic magnetic state with strongly-fluctuating and highly-entangled spins down to zero temperature without static order. However, there is no consensus on the existence of a QSL ground state in any real material so far. The disorders and competing exchange interactions may prevent the formation of an ideal QSL state on frustrated spin lattices. Here we report systematic heat transport measurements on a honeycomb-lattice compound BaCo2(AsO4)2, which manifests magnetic order in zero field. In a narrow field range after the magnetic order is nearly suppressed by an in-plane field, in both perpendicular and parallel to the zigzag direction, a finite residual linear term of thermal conductivity is clearly observed, which is attributed to the mobile fractionalized spinon excitations. This provides smoking-gun evidence for a gapless QSL state in BaCo2(AsO4)2. We discuss the underlying physics to form this exotic gapless QSL state in Co2+ honeycomb lattice.

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