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Tuning the Parity Mixing of Singlet-Septet Pairing in a Half-Heusler Superconductor

K. Ishihara, Takaaki Takenaka, Yijie Miao, Yuta Mizukami, K. Hashimoto, Minoru Yamashita, M. Kończykowski, Ryota Masuki, Motoaki Hirayama, Takuya Nomoto, Ryotaro Arita, Orest Pavlosiuk, Piotr Wiśniewski, D. Kaczorowski, T. Shibauchi

2021Physical Review X27 citationsDOIOpen Access PDF

Abstract

In superconductors, electrons with spin s 1=2 form Cooper pairs whose spin structure is usually singlet (S 0) or triplet (S 1). When the electronic structure near the Fermi level is characterized by fermions with angular momentum j 3=2 due to strong spin-orbit interactions, novel pairing states such as even-parity quintet (J 2) and odd-parity septet (J 3) states are allowed. Prime candidates for such exotic states are half-Heusler superconductors, which exhibit unconventional superconducting properties, but their pairing nature remains unsettled. Here, we show that the superconductivity in the noncentrosymmetric half-Heusler LuPdBi can be consistently described by the admixture of isotropic even-parity singlet and anisotropic odd-parity septet pairing, whose ratio can be tuned by electron irradiation. From magnetotransport and penetration depth measurements, we find that carrier concentrations and impurity scattering both increase with irradiation, resulting in a nonmonotonic change of the superconducting gap structure. Our findings shed new light on our fundamental understanding of unconventional superconducting states in topological materials.

Topics & Concepts

PairingPhysicsSuperconductivityParity (physics)Condensed matter physicsLondon penetration depthFermionAnisotropyElectronSinglet stateSpin (aerodynamics)Quantum mechanicsThermodynamicsExcited stateTopological Materials and PhenomenaRare-earth and actinide compoundsHeusler alloys: electronic and magnetic properties
Tuning the Parity Mixing of Singlet-Septet Pairing in a Half-Heusler Superconductor | Litcius