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Black phosphorus as a bipolar pseudospin semiconductor.
Jung, Sung Won; Ryu, Sae Hee; Shin, Woo Jong; Sohn, Yeongsup; Huh, Minjae; Koch, Roland J; Jozwiak, Chris; Rotenberg, Eli; Bostwick, Aaron; Kim, Keun Su.
Affiliation
  • Jung SW; Department of Physics, Yonsei University, Seoul, Korea.
  • Ryu SH; Diamond Light Source, Didcot, UK.
  • Shin WJ; Department of Physics, Yonsei University, Seoul, Korea.
  • Sohn Y; Department of Physics, Pohang University of Science and Technology, Pohang, Korea.
  • Huh M; Department of Physics, Yonsei University, Seoul, Korea.
  • Koch RJ; Department of Physics, Pohang University of Science and Technology, Pohang, Korea.
  • Jozwiak C; Department of Physics, Yonsei University, Seoul, Korea.
  • Rotenberg E; Department of Physics, Pohang University of Science and Technology, Pohang, Korea.
  • Bostwick A; Department of Physics, Yonsei University, Seoul, Korea.
  • Kim KS; Department of Physics, Pohang University of Science and Technology, Pohang, Korea.
Nat Mater ; 19(3): 277-281, 2020 Mar.
Article in En | MEDLINE | ID: mdl-32015535
Semiconductor devices rely on the charge and spin of electrons, but there is another electronic degree of freedom called pseudospin in a two-level quantum system1 such as a crystal consisting of two sublattices2. A potential way to exploit the pseudospin of electrons in pseudospintronics3-5 is to find quantum matter with tunable and sizeable pseudospin polarization. Here, we propose a bipolar pseudospin semiconductor, where the electron and hole states have opposite net pseudospin polarization. We experimentally identify such states in anisotropic honeycomb crystal-black phosphorus. By sublattice interference of photoelectrons, we find bipolar pseudospin polarization greater than 95% that is stable at room temperature. This pseudospin polarization is identified as a consequence of Dirac cones merged in the highly anisotropic honeycomb system6,7. The bipolar pseudospin semiconductor, which is a pseudospin analogue of magnetic semiconductors, is not only interesting in itself, but also might be useful for pseudospintronics.

Full text: 1 Database: MEDLINE Language: En Journal: Nat Mater Journal subject: CIENCIA / QUIMICA Year: 2020 Type: Article

Full text: 1 Database: MEDLINE Language: En Journal: Nat Mater Journal subject: CIENCIA / QUIMICA Year: 2020 Type: Article