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Interplay of Rashba/Dresselhaus spin splittings probed by photogalvanic spectroscopy - A review

Journal

PHYSICA STATUS SOLIDI B-BASIC SOLID STATE PHYSICS
Volume 251, Issue 9, Pages 1801-1823

Publisher

WILEY-V C H VERLAG GMBH
DOI: 10.1002/pssb.201350261

Keywords

photogalvanics; Rashba/Dresselhaus spin splittings; semiconductors

Funding

  1. DFG [SPP 1285]
  2. Linkage Grant of IB of BMBF at DLR
  3. RFBR
  4. POLAPHEN
  5. Skoltech within the framework of the SkolTech/MIT Initiative

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The paper reviews the interplay of Rashba/Dresselhaus spin splittings in various two-dimensional systems made of zinc-blende III-V, wurtzite, and SiGe semiconductors. We discuss the symmetry aspects of the linear and cubic in electron wavevector spin splitting in heterostructures prepared on (001)-, (110)-, (111)-, (113)-, (112)-, and (013)-oriented substrates and address the requirements for suppression of spin relaxation and realization of the persistent spin helix state. In experimental part of the paper, we overview experimental results on the interplay of Rashba/Dresselhaus spin splittings probed by photogalvanic spectroscopy: The method based on the phenomenological equivalence of the linear-in-wavevector spin splitting and several photogalvanic phenomena.

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