论文标题

内在的散装量子振荡在一个非常规绝缘子SMB $ _6 $中

Intrinsic bulk quantum oscillations in a bulk unconventional insulator SmB$_6$

论文作者

Hartstein, Mate, Liu, Hsu, Hsu, Yu-Te, Tan, Beng S., Hatnean, Monica Ciomaga, Balakrishnan, Geetha, Sebastian, Suchitra E.

论文摘要

在散装近kondo绝缘子SMB $ _6 $中发现的散装量子振荡,该$ _6 $被认为是相关的拓扑绝缘子,这是一个相当大的惊喜。随后在包括YBB $ _ {12} $(包括YBB $ _ {12} $的其他相关绝缘子中的体积量子振荡的测量值都为我们发现的一类非常规绝缘剂提供了支持,这些绝缘子宿主是构成量子振荡的,其中SMB $ _6是第一个示例。在这里,我们执行一系列实验,以检查迄今为止我们量子振荡研究的主题,在浮动区生长的SMB $ _6 $的浮带单晶体中的固有特征的证据。我们介绍了实验的结果,包括化学组成分析,磁化,导热性,电气传输和浮动区生长的SMB $ _6 $的单晶以及一系列的量子振荡实验,这是磁场,温度,温度,磁场和磁场的函数,在浮动smb $ _6 $ _6 $ _6 $ _6 $ _6 $ _6 $ _6 $ _6 $ _6 $ _6。这些实验研究的结果确定了来自SMB $ _6 $的原始浮动区生长的单晶的量子振荡的内在起源。尽管SMB $ _6 $具有散装的绝缘特征,但与未脑化的费米表面具有密切相似的基本散装费米表面的起源是理论上的核心。

The finding of bulk quantum oscillations in the bulk Kondo insulator SmB$_6$, which has been proposed to be a correlated topological insulator, proved a considerable surprise. The subsequent measurement of bulk quantum oscillations in other correlated insulators including YbB$_{12}$ have lent support to our discovery of a class of unconventional insulators that are host to bulk quantum oscillations, of which SmB$_6$ was the first example. Here we perform a series of experiments to examine evidence for the intrinsic character of bulk quantum oscillations in floating zone-grown single crystals of SmB$_6$ that have been the subject of our quantum oscillation studies thus far. We present results of experiments including chemical composition analysis, magnetisation, thermal conductivity, electrical transport, and heat capacity on floating zone-grown single crystals of SmB$_6$, and a series of quantum oscillation experiments as a function of magnetic field, temperature, and magnetic field-orientation on single crystals of floating-zone grown SmB$_6$, LaB$_6$, and elemental Aluminium. Results of these experimental studies establish the intrinsic origin of quantum oscillations from the bulk of pristine floating zone-grown single crystals of SmB$_6$. The origin of the underlying bulk Fermi surface that bears close similarity with the unhybridised Fermi surface in metallic hexaborides despite the bulk insulating character of SmB$_6$ is thus at the heart of a theoretical mystery.

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