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Quantum criticality in an organic spin-liquid insulator κ-(BEDT-TTF)2Cu2(CN)3

机译:有机自旋液体绝缘子κ-(BEDT-TTF)2Cu2(CN)3的量子临界性

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摘要

A quantum spin-liquid state, an exotic state of matter, appears when strong quantum fluctuations enhanced by competing exchange interactions suppress a magnetically ordered state. Generally, when an ordered state is continuously suppressed to 0 K by an external parameter, a quantum phase transition occurs. It exhibits critical scaling behaviour, characterized only by a few basic properties such as dimensions and symmetry. Here we report the low-temperature magnetic torque measurements in an organic triangular-lattice antiferromagnet, κ-(BEDT-TTF)2Cu2(CN)3, where BEDT-TTF stands for bis(ethylenedithio)tetrathiafulvalene. It is found that the magnetic susceptibilities derived from the torque data exhibit a universal critical scaling, indicating the quantum critical point at zero magnetic field, and the critical exponents, γ=0.83(6) and νz=1.0(1). These exponents greatly constrain the theoretical models for the quantum spin liquid, and at present, there is no theory to explain the values, to the best of our knowledge.
机译:当通过竞争性交换相互作用而增强的强量子涨落抑制了磁有序态时,就会出现量子自旋液体状态(一种奇异的物质状态)。通常,当通过外部参数将有序状态连续抑制到0 K时,就会发生量子相变。它表现出关键的缩放比例行为,仅以一些基本属性(例如尺寸和对称性)为特征。在这里,我们报告了在有机三角晶格反铁磁体κ-(BEDT-TTF)2Cu2(CN)3中的低温磁转矩测量结果,其中BEDT-TTF表示双(亚乙基二硫代)四硫富瓦烯。发现从转矩数据得出的磁化率表现出通用的临界标度,表明在零磁场下的量子临界点,临界指数为γ= 0.83(6)和νz= 1.0(1)。这些指数极大地限制了量子自旋液体的理论模型,目前,就我们所知,尚无理论来解释这些值。

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