Field-Tunable 0-π-Transitions in SnTe Topological Crystalline Insulator SQUIDs

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作者
Joachim Schönle
Kiril Borisov
Robin Klett
Denis Dyck
Franck Balestro
Günter Reiss
Wolfgang Wernsdorfer
机构
[1] Institut Néel,Center for Spinelectronic Materials & Devices, Physics Department
[2] CNRS and University Grenoble-Alpes,undefined
[3] Bielefeld University,undefined
[4] Physikalisches Institut (PHI),undefined
[5] Karlsruhe Institute of Technology (KIT),undefined
[6] Institute of Nanotechnology (INT),undefined
[7] Karlsruhe Institute of Technology (KIT),undefined
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Scientific Reports | / 9卷
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摘要
The manifestation of spin-orbit interactions, long known to dramatically affect the band structure of heavy-element compounds, governs the physics in the surging class of topological matter. A particular example is found in the new family of topological crystalline insulators. In this systems transport occurs at the surfaces and spin-momentum locking yields crystal-symmetry protected spin-polarized transport. We investigated the current-phase relation of SnTe thin films connected to superconducting electrodes to form SQUID devices. Our results demonstrate that an assisting in-plane magnetic field component can induce 0-π-transitions. We attribute these findings to giant g-factors and large spin-orbit coupling of SnTe topological crystalline insulator, which provides a new platform for investigation of the interplay between spin-orbit physics and topological transport.
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