论文标题
拓扑昆多绝缘子的比热中的磁量振荡
Magnetoquantum Oscillations in the Specific Heat of a Topological Kondo Insulator
论文作者
论文摘要
令人惊讶的是,在拓扑昆多绝缘子SMB6的测量中观察到了具有费米表面的金属的磁振荡(MQO)特征。由于这些MQO仅在测量磁性扭矩(DHVA)的测量中观察到,而不是在测量磁化率(SDH)中,因此关于MQO是否是由稀有的毫无疑问,缺陷,缺陷,和/或铝含量的抗刺激性或本质上的示范性造成的,这是一个争论。我们在这里报告了在SMB6的低温比热中,首次观察到磁振荡。观察到的频率及其对这些通量生长样品的角度依赖性与基于SMB6的磁性扭矩的先前结果一致,但推断的有效质量明显大于先前报道的。只有在MQO具有庞大的热力学起源时才能观察到这种振荡。测得的磁场依赖性振荡幅度和有效质量使我们能够排除MQO的基于铝合金包含的外部,铝制包容性的建议。
Surprisingly, magnetoquantum oscillations (MQO) characteristic of a metal with a Fermi surface have been observed in measurements of the topological Kondo insulator SmB6. As these MQO have only been observed in measurements of magnetic torque (dHvA) and not in measurements of magnetoresistance (SdH), a debate has arisen as to whether the MQO are an extrinsic effect arising from rare-earth impurities, defects, and/or aluminum inclusions or an intrinsic effect revealing the existence of charge-neutral excitations. We report here the first observation of magnetoquantum oscillations in the low-temperature specific heat of SmB6. The observed frequencies and their angular dependence for these flux-grown samples are consistent with previous results based on magnetic torque for SmB6 but the inferred effective masses are significantly larger than previously reported. Such oscillations can only be observed if the MQO are of bulk thermodynamic origin; the measured magnetic-field dependent oscillation amplitude and effective mass allow us to rule out suggestions of an extrinsic, aluminium inclusion-based origin for the MQO.