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Spin/valley pumping of resident electrons in WSe2 and WS2 monolayers

  • Cedric Robert
  • , Sangjun Park
  • , Fabian Cadiz
  • , Laurent Lombez
  • , Lei Ren
  • , Hans Tornatzky
  • , Alistair Rowe
  • , Daniel Paget
  • , Fausto Sirotti
  • , Min Yang
  • , Dinh Van Tuan
  • , Takashi Taniguchi
  • , Bernhard Urbaszek
  • , Kenji Watanabe
  • , Thierry Amand
  • , Hanan Dery
  • , Xavier Marie
  • Université Paul Sabatier
  • University of Rochester
  • National Institute for Materials Science
  • University of Rochester

Research output: Contribution to journalArticlepeer-review

Abstract

Monolayers of transition metal dichalcogenides are ideal materials to control both spin and valley degrees of freedom either electrically or optically. Nevertheless, optical excitation mostly generates excitons species with inherently short lifetime and spin/valley relaxation time. Here we demonstrate a very efficient spin/valley optical pumping of resident electrons in n-doped WSe2 and WS2 monolayers. We observe that, using a continuous wave laser and appropriate doping and excitation densities, negative trion doublet lines exhibit circular polarization of opposite sign and the photoluminescence intensity of the triplet trion is more than four times larger with circular excitation than with linear excitation. We interpret our results as a consequence of a large dynamic polarization of resident electrons using circular light.

Original languageEnglish
Article number5455
JournalNature Communications
Volume12
Issue number1
DOIs
Publication statusPublished - 1 Dec 2021

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