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TaRh2B2 and NbRh2B2: Superconductors with a chiral noncentrosymmetric crystal structure

机译:TaRh2B2和NbRh2B2:具有手性非中心对称晶体结构的超导体

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摘要

It is a fundamental truth in solid compounds that the physical properties follow the symmetry of the crystal structure. Nowhere is the effect of symmetry more pronounced than in the electronic and magnetic properties of materials—even the projection of the bulk crystal symmetry onto different crystal faces is known to have a substantial impact on the surface electronic states. The effect of bulk crystal symmetry on the properties of superconductors is widely appreciated, although its study presents substantial challenges. The effect of a lack of a center of symmetry in a crystal structure, for example, has long been understood to necessitate that the wave function of the collective electron state that gives rise to superconductivity has to be more complex than usual. However, few nonhypothetical materials, if any, have actually been proven to display exotic superconducting properties as a result. We introduce two new superconductors that in addition to having noncentrosymmetric crystal structures also have chiral crystal structures. Because the wave function of electrons in solids is particularly sensitive to the host material’s symmetry, crystal structure chirality is expected to have a substantial effect on their superconducting wave functions. Our two experimentally obtained chiral noncentrosymmetric superconducting materials have transition temperatures to superconductivity that are easily experimentally accessible, and our basic property characterization suggests that their superconducting properties may be unusual. We propose that their study may allow for a more in-depth understanding of how chirality influences the properties of superconductors and devices that incorporate them.
机译:固体化合物的基本原理是物理性质遵循晶体结构的对称性。在材料的电子和磁性方面,对称性的影响最明显,甚至是块状晶体对称性投影到不同晶面上对表面电子态也有实质性影响。尽管体晶对称性对超导体性能的影响提出了重大挑战,但人们对其影响广为人知。长期以来,例如,人们一直认为,在晶体结构中缺乏对称中心的影响使得产生超导性的集体电子态的波函数必须比通常的更为复杂。但是,实际上很少有非假设的材料被证明具有奇异的超导性能。我们介绍了两种新的超导体,它们除了具有非中心对称的晶体结构外,还具有手性晶体结构。由于固体中电子的波函数对主体材料的对称性特别敏感,因此晶体结构的手性有望对其超导波函数产生重大影响。我们的两种通过实验获得的手性非中心对称超导材料的转变温度都可以通过实验轻松地达到超导性,并且我们的基本特性表征表明它们的超导特性可能与众不同。我们建议,他们的研究可能允许更深入地了解手性如何影响超导体和包含它们的器件的性能。

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