4.8 Article

Room Temperature Electrical Detection of Spin Polarized Currents in Topological Insulators

期刊

NANO LETTERS
卷 15, 期 12, 页码 7976-7981

出版社

AMER CHEMICAL SOC
DOI: 10.1021/acs.nanolett.5b03080

关键词

Topological insulators; Bi2Se3; spin-momentum locking spin polarized surface states; room temperature; ferromagnetic tunnel contacts

资金

  1. Miracrys
  2. Nano Area of the Advance program at Chalmers University of Technology
  3. EU
  4. Swedish Research Council (VR)
  5. EMM Nano Consortium scholarship

向作者/读者索取更多资源

Topological insulators (TIs) are a new class of quantum materials that exhibit a current-induced spin polarization due to spinmomentum locking of massless Dirac Fermions in their surface states. This helical spin polarization in three-dimensional (3D) TIs has been observed using photoemission spectroscopy up to room temperatures. Recently, spin polarized surface currents in 3D TIs were detected electrically by potentiometric measurements using ferromagnetic detector contacts. However, these electric measurements are so far limited to cryogenic temperatures. Here we report the room temperature electrical detection of the spin polarization on the surface of Bi2Se3 by employing spin sensitive ferromagnetic tunnel contacts. The current-induced spin polarization on the Bi2Se3 surface is probed by measuring the magnetoresistance while switching the magnetization direction of the ferromagnetic detector. A spin resistance of up to 70 m Omega is measured at room temperature, which increases linearly with current bias, reverses sign with current direction, and decreases with higher TI thickness. The magnitude of the spin signal, its sign, and control experiments, using different measurement geometries and interface conditions, rule out other known physical effects. These findings provide further information about the electrical detection of current-induced spin polarizations in 3D TIs at ambient temperatures and could lead to innovative spin-based technologies.

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