论文标题

三角形晶格抗fiferromagnet naybse $ _2 $

Spinon Fermi surface spin liquid in a triangular lattice antiferromagnet NaYbSe$_2$

论文作者

Dai, Peng-Ling, Zhang, Gaoning, Xie, Yaofeng, Duan, Chunruo, Gao, Yonghao, Zhu, Zihao, Feng, Erxi, Tao, Zhen, Huang, Chien-Lung, Cao, Huibo, Podlesnyak, Andrey, Granroth, Garrett E., Voneshen, David, Wang, Shun, Tan, Guotai, Morosan, Emilia, Wang, Xia, Lin, Hai-Qing, Shu, Lei, Chen, Gang, Guo, Yanfeng, Lu, Xingye, Dai, Pengcheng

论文摘要

在存在较强的自旋轨道耦合,晶体电场和几何挫折的情况下,具有相互作用有效自旋的稀土离子的三角形晶格是探索量子自旋液体(QSL)物理的理想平台。 YB Delafossites,Naybch $ _2 $(CH = O,S,SE),YB离子形成完美的三角形晶格,建议是QSL的候选者。先前的热力学,核磁共振和NAYBCH上的MUON自旋旋转测量值支持了QSL接地状态的建议。尚未观察到QSL的关键特征,即由自旋量子数分数化引起的自旋激发连续体。在这里,我们对高质量的单晶naybse $ _2 $样品进行了弹性和非弹性中子散射测量以及详细的热力学测量,以确认没有远程磁性降低到40 mk,并进一步揭示了从0.1到2.5 mev的磁性激发连续性的清晰签名。 Spinon Continuum的磁激发光谱的结构与理论期望之间的比较表明,Naybse $ _2 $的基态是带有Spinon Fermi表面的QSL。

Triangular lattice of rare-earth ions with interacting effective spin-$1/2$ local moments is an ideal platform to explore the physics of quantum spin liquids (QSLs) in the presence of strong spin-orbit coupling, crystal electric fields, and geometrical frustration. The Yb delafossites, NaYbCh$_2$ (Ch=O, S, Se) with Yb ions forming a perfect triangular lattice, have been suggested to be candidates for QSLs. Previous thermodynamics, nuclear magnetic resonance, and muon spin rotation measurements on NaYbCh$_2$ have supported the suggestion of the QSL ground states. The key signature of a QSL, the spin excitation continuum, arising from the spin quantum number fractionalization, has not been observed. Here we perform both elastic and inelastic neutron scattering measurements as well as detailed thermodynamic measurements on high-quality single-crystalline NaYbSe$_2$ samples to confirm the absence of long-range magnetic order down to 40 mK, and further reveal a clear signature of magnetic excitation continuum extending from 0.1 to 2.5 meV. The comparison between the structure of the magnetic excitation spectra and the theoretical expectation from the spinon continuum suggests that the ground state of NaYbSe$_2$ is a QSL with a spinon Fermi surface.

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