UGC-DAE Consortium for Scientific Research, Mumbai Centre, BARC Campus, Trombay, Mumbai 400085, India.
Tata Institute of Fundamental Research, Homi Bhabha Road, Colaba, Mumbai 400005, India.
J Phys Condens Matter. 2023 May 2;35(30). doi: 10.1088/1361-648X/acce8a.
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, TbSi, (= 69 K), containing honey-comb network of Tb ions, are completely suppressed by a critical applied field,, in heat-capacity and magnetization data, mimicking the behavior of Kitaev physics candidates. The neutron diffraction patterns as a function ofreveal that it is an incommensurate magnetic structure that gets suppressed, showing peaks arising from multiple wave vectors beyond. Increasing magnetic entropy as a function ofwith a peak in the magnetically ordered state is in support of some kind of magnetic disorder in a narrow field range after. 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.
人们一直在努力寻找“奇异”的量子自旋液体(QSL)材料。一些由各向异性交换相互作用主导的过渡金属绝缘体(“Kitaev 模型”适用于磁离子的蜂窝网络)被认为是很有前途的候选材料。在这种 Kitaev 绝缘体中,通过施加磁场,可以从零磁场反铁磁状态中获得 QSL,从而抑制了其他导致磁有序的交换相互作用。在这里,我们表明,含蜂窝状 Tb 离子的金属间化合物 TbSi(=69 K)的长程磁有序特征,在热容和磁化数据中完全被临界施加场,抑制,模拟 Kitaev 物理候选材料的行为。随着的变化,中子衍射图谱揭示出它是一种失谐的磁结构,会被抑制,显示出多个超出的波矢的峰。随着在磁有序态下的增加,磁熵支持在之后的窄磁场范围内存在某种磁无序。这种金属重稀土体系在高磁场下的行为,据我们所知,过去并未有报道,因此令人感到好奇。