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Cubic Rashba spin-orbit interaction of a two-dimensional hole gas in a strained- Ge/SiGe quantum well

  • Rai Moriya
  • , Kentarou Sawano
  • , Yusuke Hoshi
  • , Satoru Masubuchi
  • , Yasuhiro Shiraki
  • , Andreas Wild
  • , Christian Neumann
  • , Gerhard Abstreiter
  • , Dominique Bougeard
  • , Takaaki Koga
  • , Tomoki Machida
  • Institute of Industrial Science
  • Tokyo City University
  • University of Tokyo
  • Technical University of Munich
  • University of Regensburg
  • Hokkaido University

Research output: Contribution to journalArticlepeer-review

133 Scopus citations

Abstract

The spin-orbit interaction (SOI) of a two-dimensional hole gas in the inversion symmetric semiconductor Ge is studied in a strained-Ge/SiGe quantum well structure. We observe weak antilocalization (WAL) in the magnetoconductivity measurement, revealing that the WAL feature can be fully described by the k-cubic Rashba SOI theory. Furthermore, we demonstrate electric field control of the Rashba SOI. Our findings reveal that the heavy hole (HH) in strained Ge is a purely cubic Rashba system, which is consistent with the spin angular momentum mj=±3/2 nature of the HH wave function.

Original languageEnglish
Article number086601
JournalPhysical Review Letters
Volume113
Issue number8
DOIs
StatePublished - 21 Aug 2014

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