Login / Signup

Creation of equal-spin triplet superconductivity at the Al/EuS interface.

Simon DieschPeter MachonM WolzC SürgersD BeckmannWolfgang BelzigElke Scheer
Published in: Nature communications (2018)
In conventional superconductors, electrons of opposite spins are bound into Cooper pairs. However, when the superconductor is in contact with a non-uniformly ordered ferromagnet, an exotic type of superconductivity can appear at the interface, with electrons bound into three possible spin-triplet states. Triplet pairs with equal spin play a vital role in low-dissipation spintronics. Despite the observation of supercurrents through ferromagnets, spectroscopic evidence for the existence of equal-spin triplet pairs is still missing. Here we show a theoretical model that reveals a characteristic gap structure in the quasiparticle density of states which provides a unique signature for the presence of equal-spin triplet pairs. By scanning tunnelling spectroscopy we measure the local density of states to reveal the spin configuration of triplet pairs. We demonstrate that the Al/EuS interface causes strong and tunable spin-mixing by virtue of its spin-dependent transmission.
Keyphrases
  • room temperature
  • density functional theory
  • single molecule
  • energy transfer
  • transition metal
  • high resolution
  • molecular dynamics
  • gene expression
  • dna methylation
  • genome wide
  • molecular docking