PACS numbers

75.76.+j Spin transport effects
  1. P.G. Baranov, A.M. Kalashnikova et alSpintronics of semiconductor, metallic, dielectric, and hybrid structures (100th anniversary of the Ioffe Institute)Phys. Usp. 62 795–822 (2019)
    75.30.Kz, 75.50.Bb, 75.50.Gg, 75.76.+j, 75.78.Jp, 76.70.Hb, 78.30.Fs, 78.55.Et, 85.75.−d (all)
  2. Yu.N. Barabanenkov, S.A. Nikitov, M.Yu. Barabanenkov “Quantum fluctuations in magnetic nanostructuresPhys. Usp. 62 82–91 (2019)
    75.30.Ds, 75.76.+j, 75.78.−n (all)
  3. A.K. Zvezdin, M.D. Davydova, K.A. Zvezdin “Ultrafast spin dynamics and inverse spin Hall effect in nanostructures with giant spin-orbit couplingPhys. Usp. 61 1127–1136 (2018)
    75.75.−c, 75.76.+j, 75.78.Cd, 75.78.Jp, 78.20.Ls (all)
  4. N.V. Volkov “Spintronics: manganite-based magnetic tunnel structuresPhys. Usp. 55 250–269 (2012)
    72.25.−b, 75.76.+j, 85.75.−d (all)
  5. Yu.G. Kusrayev “Spin phenomena in semiconductors: physics and applicationsPhys. Usp. 53 725–738 (2010)
    75.47.−m, 75.76.+j, 85.75.−d (all)
  6. S.A. Tarasenko “Spin photocurrents in semiconductorsPhys. Usp. 53 739–742 (2010)
    75.76.+j, 78.56.−a, 85.75.−d (all)
  7. N.S. Averkiev “Spin relaxation anisotropy in two-dimensional semiconductorsPhys. Usp. 53 742–745 (2010)
    75.76.+j, 76.30.−v, 85.75.−d (all)
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