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Pressure induced superconductivity in the antiferromagnetic Dirac material BaMnBi2

机译:反铁磁狄拉克材料BaMnBi2中的压力感应超导

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摘要

The so-called Dirac materials such as graphene and topological insulators are a new class of matter different from conventional metals and (doped) semiconductors. Superconductivity induced by doing or applying pressure in these systems may be unconventional, or host mysterious Majorana fermions. Here, we report a successfully observation of pressure-induced superconductivity in an antiferromagnetic Dirac material BaMnBi2 with T c of ~4 K at 2.6 GPa. Both the higher upper critical field, μ 0 H c2(0) ~ 7 Tesla, and the measured current independent of T c precludes that superconductivity is ascribed to the Bi impurity. The similarity in ρ ab(B) linear behavior at high magnetic fields measured at 2 K both at ambient pressure (non-superconductivity) and 2.6 GPa (superconductivity, but at the normal state), as well as the smooth and similar change of resistivity with pressure measured at 7 K and 300 K in zero field, suggests that there may be no structure transition occurred below 2.6 GPa, and superconductivity observed here may emerge in the same phase with Dirac fermions. Our findings imply that BaMnBi2 may provide another platform for studying SC mechanism in the system with Dirac fermions.
机译:所谓的狄拉克(Dirac)材料,例如石墨烯和拓扑绝缘体,是不同于常规金属和(掺杂)半导体的一类新物质。在这些系统中施加或施加压力而诱发的超导电性可能是非常规的,或含有神秘的马约拉纳费米子。在这里,我们成功地观察到反铁磁狄拉克材料BaMnBi2在2.6 GPa下的T c为〜4 K的压力诱导的超导性。较高的上临界场μ0 H c2(0)~~ 7 Tesla,以及与T c无关的测量电流均排除了Bi杂质的超导性。在环境压力(非超导性)和2.6 GPa(超导性,但在正常状态)下于2 K下测量的高磁场下ρab(B)线性行为的相似性,以及电阻率的平滑相似变化在零场下测得的压力为7 K和300 K时,表明在2.6 GPa以下可能不会发生结构转变,并且此处观察到的超导性可能与狄拉克费米子在同一相中出现。我们的发现暗示BaMnBi2可能为研究狄拉克费米子系统中的SC机理提供另一个平台。

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