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Negative Schottky Barriers and Spin-Polarized Fermi Crossings at WSe2/NbSe2Interfaces

  • Oliver J. Clark
  • , Anugrah Azhar
  • , Thi Hai Yen Vu
  • , Benjamin A. Chambers
  • , Federico Mazzola
  • , Sadhana Sridhar
  • , Geetha Balakrishnan
  • , Aaron Bostwick
  • , Chris Jozwiak
  • , Eli Rotenberg
  • , Sarah L. Harmer
  • , Mohammad Saeed Bahramy
  • , Michael S. Fuhrer
  • , Mark T. Edmonds

Research output: Contribution to journalArticlepeer-review

1 Citation (Scopus)
1 Downloads (Pure)

Abstract

Discovering and engineering spin-polarized surface states in the electronic structures of condensed matter systems is a crucial first step in the development of spintronic devices, wherein spin-polarized bands crossing the Fermi level can facilitate information transfer. Here, through nanofocused angle-resolved photoemission spectroscopy (nano-ARPES) and density functional theory-based calculations, we show that the interface between monolayer WSe2 and metallic NbSe2 exhibits a negative Schottky barrier height of ∼ −30 meV: the K-point valleys of the semiconducting layer are shifted by ∼800 meV to produce a surface-localized Fermi surface populated only by spin-polarized charge carriers. By increasing the WSe2 thickness, the Fermi pockets can be moved from K to Γ, demonstrating tunability of novel semimetallic phases that exist atop a substrate additionally possessing charge density wave and superconducting phases. Together, this study provides a spectroscopic understanding into p-type, Schottky barrier-free interfaces, which are of urgent interest for bypassing the limitations of current-generation vertical field effect transistors, in addition to longer-term spintronics development.

Original languageEnglish
Pages (from-to)7898-7907
Number of pages10
JournalACS nano
Volume20
Issue number9
DOIs
Publication statusPublished - 10 Mar 2026

Keywords

  • 2D material heterostructures
  • 2D material interfaces
  • angle-resolved photoemission spectroscopy
  • density functional theory
  • p-type contacts
  • transition metal dichalcogenides

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