论文标题
增强拓扑结节半学INXTAS2中各向异性超导性
Enhanced anisotropic superconductivity in the topological nodal-line semimetal InxTaS2
论文作者
论文摘要
拓扑材料中拓扑带和电荷密度波(CDW)的共存引起了极大的关注,因为它们具有奇妙的特性,例如轴支cdw,三维量子霍尔效应等。在这项工作中,nodal-line semimetal intextas2在cdw和超级传导率中表现出了两种分离的结构,其结构和拓扑是在结构上的两种分离率(两者)。 IN0.58Tase2。在Inxtas2中,在低温下观察到2 x 2相称的CDW,并通过运输特性和STM测量确定。此外,超导性出现在0.69 K以下,并且与2H-TAS2相比,上临界场的各向异性比[gamma = H || AB C2(0)= H || C C2(0)]显着增强,该2H-TAS2共享相同的必需层单位。根据劳伦斯·唐尼亚奇(Lawrence-Doniach)模型,可以通过在weyl环位置的KX-KY平面中的有效质量降低来解释增强的伽马。因此,这种分层拓扑系统可能会提供一个平台来研究高度各向异性的超导性,并了解批量或二维极限中极大的上临界场。
Coexistence of topological bands and charge density wave (CDW) in topological materials has attracted immense attentions because of their fantastic properties, such as axionic-CDW, three-dimensional quantum Hall effect, etc. In this work, a nodal-line semimetal InxTaS2 characterized by CDW and superconductivity is successfully synthesized, whose structure and topological bands (two separated Wely rings) are similar to In0.58TaSe2. A 2 x 2 commensurate CDW is observed at low temperature in InxTaS2, identified by transport properties and STM measurements. Moreover, superconductivity emerges below 0.69 K, and the anisotropy ratio of upper critical field [Gamma = H||ab c2(0)=H||c c2(0)] is significantly enhanced compared to 2H-TaS2, which shares the same essential layer unit. According to the Lawrence-Doniach model, the enhanced Gamma may be explained by the reduced effective mass in kx-ky plane, where Weyl rings locate. Therefore, this type of layered topological systems may offer a platform to investigate highly anisotropic superconductivity and to understand the extremely large upper critical field in the bulk or in the two-dimensional limit.