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作 者:Han-Bing Leng Chuang Li Xin Liu
机构地区:[1]School of Physics and Institute of Quantum Science and Engineering,Huazhong University of Science and Technology,Wuhan 430074,China [2]Wuhan National High Magnetic Field Center and Hubei Key Laboratory of Gravitation and Quantum Physics,Wuhan 430074,China
出 处:《Science China(Physics,Mechanics & Astronomy)》2021年第9期112-122,共11页中国科学:物理学、力学、天文学(英文版)
基 金:the Ministry of Science and Technology of China(Grant No.2016YFA0401003);the National Natural Science Foundation of China(Grant No.11674114).
摘 要:We propose a scheme to reveal the possible nematic superconducting order parameter in the doped Bi2Se3 by observing the anisotropic unconventional Josephson effect without an external magnetic field.We find the presence of an intrinsicπ-phase in the spin-triplet channel of Andreev reflection.Its competition with the odd-parity superconducting gap phase can lead to unconventional Josephson effect in the Josephson junction,whose normal region is connected to the same side of the superconductor,called the U-shaped junction according to its geometry.For Josephson junctions with the interfaces perpendicular to the nematic direction,the competition will lead to a Josephsonπ-junctions.In the case where the interface is parallel to the nematic direction,it will lead to a Josephson 0-junction.Thus,this can directly reflect the nematic superconductivity.It is worth noting that Josephson coupling with the 4πperiod appears only in the normal injected channels.Interestingly,if the Josephson junction adopts a conventional geometry,it always exhibits a normal Josephson 0-junction regardless of the gap function taken by the doped Bi2Se3 and therefore cannot distinguish the pairing symmetry.We thus propose a superconducting quantum interference device containing a U-shaped Josephson junction to detect nematic superconductivity.This proposal not only can be applied to detect nematic superconductivity but also provides a feasible platform for topological quantum computation.
关 键 词:topological superconductors spin-triplet pairings odd parity unconventional Josephson effect
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