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Possible observation of quantum spin-nematic phase in a frustrated magnet

机译:失磁磁体中量子自旋向列相的可能观察

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摘要

Water freezes into ice in winter and evaporates into vapor in summer. Scientifically, the transformations between solid, liquid, and gas are called phase transitions and can be classified through the changes in symmetry which occur in each case. A fourth phase of matter was discovered late in the 19th century: the liquid crystal nematic, in which rod- or disk-shaped molecules align like the atoms in a solid, while continuing to flow like a liquid. Here we report thermodynamic evidence of a quantum analog of the classical nematic phase, the quantum spin nematic (SN). In an SN, the spins of a quantum magnet select a common axis, like a nematic liquid crystal, while escaping conventional magnetic order. Our state-of-the-art thermal measurements in high pulsed magnetic fields up to 33 T on the copper mineral volborthite with spin 1/2 on a frustrated lattice provide thermodynamic evidence for SN order, half a century after the theoretical proposal [Blume M, Hsieh YY (1969) J Appl Phys 40:1249; Andreev AF, Grishchuk IA (1984) J Exp Theor Phys 97:467–475].
机译:在冬天,水冻结成冰,在夏天蒸发成蒸气。从科学上讲,固体,液体和气体之间的转换称为相变,可以通过在每种情况下发生的对称性变化进行分类。物质的第四阶段是在19世纪末发现的:液晶向列相,其中杆状或盘状分子像原子一样排列在固体中,同时继续像液体一样流动。在这里,我们报告经典向列相的量子类似物量子自旋向列(SN)的热力学证据。在SN中,量子磁体的自旋选择一个公共轴,例如向列液晶,同时逃避了常规的磁性顺序。我们的最新技术是在理论上提出的半个世纪后[Blume M ,Hsieh YY(1969)J Appl Phys 40:1249; Andreev AF,Grishchuk IA(1984)J Exp Theor Phys 97:467-475]。

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