4.8 Article

p-wave triggered superconductivity in single-layer graphene on an electron-doped oxide superconductor

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NATURE COMMUNICATIONS
卷 8, 期 -, 页码 -

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NATURE PUBLISHING GROUP
DOI: 10.1038/ncomms14024

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资金

  1. Royal Society
  2. Leverhulme Trust [IN-2013-033]
  3. Schiff Foundation
  4. EPSRC [EP/N017242/1, EP/G037221/1, EP/K01711X/1, EP/K017144/1, EP/N010345/1, EP/M507799/1, EP/L016087/1]
  5. ERC Grant Hetero2D
  6. EU
  7. COST Action [MP-1201]
  8. MSCA-IFEF-ST [656485-Spin3]
  9. Outstanding Academic Fellows programme at NTNU
  10. Research Council of Norway [205591, 216700, 24080]
  11. EPSRC [EP/N017242/1, EP/N010345/1, EP/M507799/1, EP/K017144/1, EP/K01711X/1] Funding Source: UKRI
  12. Engineering and Physical Sciences Research Council [EP/M507799/1, 1209963, EP/N010345/1, 1354817, EP/K01711X/1, EP/K017144/1] Funding Source: researchfish

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Electron pairing in the vast majority of superconductors follows the Bardeen-Cooper- Schrieffer theory of superconductivity, which describes the condensation of electrons into pairs with antiparallel spins in a singlet state with an s-wave symmetry. Unconventional superconductivity was predicted in single-layer graphene (SLG), with the electrons pairing with a p-wave or chiral d-wave symmetry, depending on the position of the Fermi energy with respect to the Dirac point. By placing SLG on an electron-doped (non-chiral) d-wave superconductor and performing local scanning tunnelling microscopy and spectroscopy, here we show evidence for a p-wave triggered superconducting density of states in SLG. The realization of unconventional superconductivity in SLG offers an exciting new route for the development of p-wave superconductivity using two-dimensional materials with transition temperatures above 4.2 K.

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