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Evidence for anisotropic spin-triplet Andreev reflection at the 2D van der Waals ferromagnet/superconductor interface

  • Ranran Cai
  • , Yunyan Yao
  • , Peng Lv
  • , Yang Ma
  • , Wenyu Xing
  • , Boning Li
  • , Yuan Ji
  • , Huibin Zhou
  • , Chenghao Shen
  • , Shuang Jia
  • , X. C. Xie
  • , Igor Žutić
  • , Qing Feng Sun
  • , Wei Han
  • Peking University
  • Collaborative Innovation Center of Quantum Matter
  • Wuhan University of Technology
  • SUNY Buffalo
  • University of Chinese Academy of Sciences
  • Beijing Academy of Quantum Information Sciences

Research output: Contribution to journalArticlepeer-review

38 Scopus citations

Abstract

Fundamental symmetry breaking and relativistic spin–orbit coupling give rise to fascinating phenomena in quantum materials. Of particular interest are the interfaces between ferromagnets and common s-wave superconductors, where the emergent spin-orbit fields support elusive spin-triplet superconductivity, crucial for superconducting spintronics and topologically-protected Majorana bound states. Here, we report the observation of large magnetoresistances at the interface between a quasi-two-dimensional van der Waals ferromagnet Fe0.29TaS2 and a conventional s-wave superconductor NbN, which provides the possible experimental evidence for the spin-triplet Andreev reflection and induced spin-triplet superconductivity at ferromagnet/superconductor interface arising from Rashba spin-orbit coupling. The temperature, voltage, and interfacial barrier dependences of the magnetoresistance further support the induced spin-triplet superconductivity and spin-triplet Andreev reflection. This discovery, together with the impressive advances in two-dimensional van der Waals ferromagnets, opens an important opportunity to design and probe superconducting interfaces with exotic properties.

Original languageEnglish
Article number6725
JournalNature Communications
Volume12
Issue number1
DOIs
StatePublished - Dec 2021

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