论文标题

八极极量子自旋液体液体的磁场效应

Magnetic field effects in an octupolar quantum spin liquid candidate

论文作者

Gao, Bin, Chen, Tong, Yan, Han, Duan, Chunruo, Huang, Chien-Lung, Yao, Xu Ping, Ye, Feng, Balz, Christian, Stewart, J. Ross, Nakajima, Kenji, Ohira-Kawamura, Seiko, Xu, Guangyong, Xu, Xianghan, Cheong, Sang-Wook, Morosan, Emilia, Nevidomskyy, Andriy H., Chen, Gang, Dai, Pengcheng

论文摘要

量子自旋液体(QSL)是一种量子机械纠缠的无序状态,通常是由于沮丧的磁性偶极相互作用引起的。但是,在某些pyrochlore磁铁中,QSL也可能来自沮丧的磁性八极相互作用。尽管偶极和八极相互作用驱动的QSL的关键特征是由自旋量子数分数化引起的旋转激发连续性(旋转子)的存在,但外部磁场诱导的铁磁序将在偶极QSL中将蜘蛛网转化为常规的旋转波。相比之下,在八极QSL中,旋转波带有八极矩,这些八个电源矩不会以领先顺序,到外部磁场或中子矩,但会导致热容量的场依赖性。在这里,我们使用中子散射来表明,将大型外部磁场应用于CE2ZR2O7,即八极QSL候选者CE2ZR2O7,通过将蜘蛛网凝结到静态铁磁序状状态中,诱导了Anderson-Higgs的过渡,具有八八度旋转状态,可为中子不可知,但对热容量有贡献。我们的理论计算还为CE2SN2O7 pyrochlore中的大波形在大波形及其在CE2ZR2O7中的不存在提供了微观的定性理解。因此,我们的结果将CE2ZR2O7识别为八度U(1)QSL的强候选者,确定沮丧的磁性八极极相互作用是基于CE的Pyrochlore磁铁中QSL性质的原因。

Quantum spin liquid (QSL) is a disordered state of quantum-mechanically entangled spins commonly arising from frustrated magnetic dipolar interactions. However, QSL in some pyrochlore magnets can also come from frustrated magnetic octupolar interactions. Although the key signature for both dipolar and octupolar interaction-driven QSL is the presence of a spin excitation continuum (spinons) arising from the spin quantum number fractionalization, an external magnetic field-induced ferromagnetic order will transform the spinons into conventional spin waves in a dipolar QSL. By contrast, in an octupole QSL, the spin waves carry octupole moments that do not couple, in the leading order, to the external magnetic field or to neutron moments but will contribute to the field dependence of the heat capacity. Here we use neutron scattering to show that the application of a large external magnetic field to Ce2Zr2O7, an octupolar QSL candidate, induces an Anderson-Higgs transition by condensing the spinons into a static ferromagnetic ordered state with octupolar spin waves invisible to neutrons but contributing to the heat capacity. Our theoretical calculations also provide a microscopic, qualitative understanding for the presence of octupole scattering at large wavevectors in Ce2Sn2O7 pyrochlore, and its absence in Ce2Zr2O7. Therefore, our results identify Ce2Zr2O7 as a strong candidate for an octupolar U (1) QSL, establishing that frustrated magnetic octupolar interactions are responsible for QSL properties in Ce-based pyrochlore magnets.

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