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On-Chip Andreev Devices: Hard Superconducting Gap and Quantum Transport in Ballistic Nb-In0.75 Ga0.25 As-Quantum-Well-Nb Josephson Junctions.
Delfanazari, Kaveh; Puddy, Reuben K; Ma, Pengcheng; Yi, Teng; Cao, Moda; Gul, Yilmaz; Farrer, Ian; Ritchie, David A; Joyce, Hannah J; Kelly, Michael J; Smith, Charles G.
Afiliación
  • Delfanazari K; Department of Physics, Cavendish Laboratory, University of Cambridge, Cambridge, CB3 0HE, UK.
  • Puddy RK; Centre for Advanced Photonics and Electronics, Electrical Engineering Division, University of Cambridge, Cambridge, CB3 0FA, UK.
  • Ma P; Department of Physics, Cavendish Laboratory, University of Cambridge, Cambridge, CB3 0HE, UK.
  • Yi T; Department of Physics, Cavendish Laboratory, University of Cambridge, Cambridge, CB3 0HE, UK.
  • Cao M; Department of Physics, Cavendish Laboratory, University of Cambridge, Cambridge, CB3 0HE, UK.
  • Gul Y; Department of Physics, Cavendish Laboratory, University of Cambridge, Cambridge, CB3 0HE, UK.
  • Farrer I; Department of Electronic and Electrical Engineering, University College London, London, WC1E 7JE, UK.
  • Ritchie DA; Department of Physics, Cavendish Laboratory, University of Cambridge, Cambridge, CB3 0HE, UK.
  • Joyce HJ; Department of Electronic and Electrical Engineering, University of Sheffield, Mappin Street, Sheffield, S1 3JD, UK.
  • Kelly MJ; Department of Physics, Cavendish Laboratory, University of Cambridge, Cambridge, CB3 0HE, UK.
  • Smith CG; Centre for Advanced Photonics and Electronics, Electrical Engineering Division, University of Cambridge, Cambridge, CB3 0FA, UK.
Adv Mater ; 29(37)2017 Oct.
Article en En | MEDLINE | ID: mdl-28804969
ABSTRACT
A superconducting hard gap in hybrid superconductor-semiconductor devices has been found to be necessary to access topological superconductivity that hosts Majorana modes (non-Abelian excitation). This requires the formation of homogeneous and barrier-free interfaces between the superconductor and semiconductor. Here, a new platform is reported for topological superconductivity based on hybrid Nb-In0.75 Ga0.25 As-quantum-well-Nb that results in hard superconducting gap detection in symmetric, planar, and ballistic Josephson junctions. It is shown that with careful etching, sputtered Nb films can make high-quality and transparent contacts to the In0.75 Ga0.25 As quantum well, and the differential resistance and critical current measurements of these devices are discussed as a function of temperature and magnetic field. It is demonstrated that proximity-induced superconductivity in the In0.75 Ga0.25 As-quantum-well 2D electron gas results in the detection of a hard gap in four out of seven junctions on a chip with critical current values of up to 0.2 µA and transmission probabilities of >0.96. The results, together with the large g-factor and Rashba spin-orbit coupling in In0.75 Ga0.25 As quantum wells, which indeed can be tuned by the indium composition, suggest that the Nb-In0.75 Ga0.25 As-Nb system can be an excellent candidate to achieve topological phase and to realize hybrid topological superconducting devices.
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Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Idioma: En Revista: Adv Mater Asunto de la revista: BIOFISICA / QUIMICA Año: 2017 Tipo del documento: Article País de afiliación: Reino Unido

Texto completo: 1 Colección: 01-internacional Base de datos: MEDLINE Idioma: En Revista: Adv Mater Asunto de la revista: BIOFISICA / QUIMICA Año: 2017 Tipo del documento: Article País de afiliación: Reino Unido
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