论文标题
磁场诱导的远程磁性熔点类似于金属化合物TB5SI3中的Kitaev绝缘子
Magnetic-field induced melting of long-range magnetic order akin to Kitaev insulators in the metallic compound Tb5Si3
论文作者
论文摘要
一直以来一直努力寻找异国情调的量子自旋液体(QSL)材料。某些以方向依赖性各向异性交换相互作用(用于磁性离子蜂窝网络网络的模型)主导的某些过渡金属绝缘子被认为是有希望的情况。在这样的Kitaev绝缘子中,QSL是通过应用磁场从零场抗铁磁态实现的,从而抑制了负责磁性的其他交换相互作用。在这里,我们表明,金属间化合物TB5SI3(T_N = 69 K)的特征完全抑制了受热容量和磁性数据的关键应用,H_CR完全抑制了TB离子的蜂蜜炸弹网络,并模仿了Kitaev物理学的行为。中子衍射模式随H的函数而表明,它是一种不稳定的磁性结构,被抑制了,显示出源于HCR以外的多个波形向量引起的峰。在磁序状态下,增加磁熵是H的函数,在H_CR之后,在狭窄的场范围内支持某种磁性障碍。过去尚未报道过金属重的稀土系统的这种高场行为,因此很有趣。
There have been constant efforts to find exotic quantum spin-liquid (QSL) materials. Some of the transition metal insulators dominated by the direction dependent anisotropic exchange interaction (Kitaev model for honeycomb network of magnetic ions) are considered to be promising cases for the same. In such Kitaev insulators, QSL is achieved from the zero-field antiferromagnetic state by the application of magnetic field, suppressing other exchange interactions responsible for magnetic order. Here, we show that the features attributable to long-range magnetic ordering of the intermetallic compound, Tb5Si3 (T_N= 69 K), containing honey-comb network of Tb ions, are completely suppressed by a critical applied field, H_cr, in heat-capacity and magnetization data, mimicking the behavior of Kitaev physics candidates. The neutron diffraction patterns as a function of H reveal that it is an incommensurate magnetic structure that gets suppressed, showing peaks arising from multiple wave vectors beyond Hcr. Increasing magnetic entropy as a function of H with a peak in the magnetically ordered state is in support of some kind of magnetic disorder in a narrow field range after H_cr. Such a high-field behavior for a metallic heavy rare-earth system to our knowledge has not been reported in the past and therefore is intriguing.