PACS numbers

12.39.Dc Skyrmions 74.78.Fk Multilayers, superlattices, heterostructures 75.70.−i Magnetic properties of thin films, surfaces, and interfaces
  1. S.S. Apostoloff, E.S. Andriyakhina, I.S. Burmistrov “Effect of Pearl vortices on shape and position of Néel-type skyrmions in superconductor—chiral ferromagnet heterostructuresPhys. Usp. 68 (11) (2025)
    12.39.Dc, 74.78.Fk, 75.70.−i (all)
  2. E.H. Lock, S.V. Gerus “Electromagnetic waves in a tangentially magnetized bi-gyrotropic layer (with an example of analysis of spin wave characteristics in a ferrite plate)Phys. Usp. 67 1257–1270 (2024)
    41.20.Gz, 41.20.Jb, 75.70.−i (all)
  3. V.M. Pudalov “Measurements of the magnetic properties of conduction electronsPhys. Usp. 64 3–27 (2021)
    07.55.Jg, 75.70.−i, 85.75.−d (all)
  4. M.Yu. Kagan, V.A. Mitskan, M.M. Korovushkin “Anomalous superconductivity and superfluidity in repulsive fermion systemsPhys. Usp. 58 733–761 (2015)
    67.85.−d, 74.20.−z, 74.20.Mn, 74.20.Rp, 74.25.Dw, 74.78.Fk, 81.05.ue (all)
  5. E.H. Lock “Angular beam width of a slit-diffracted wave with noncollinear group and phase velocitiesPhys. Usp. 55 1239–1254 (2012)
    41.20.Gz, 41.20.Jb, 42.25.Fx, 75.70.−i (all)
  6. Yu.V. Gulyaev, S.V. Tarasenko, V.G. Shavrov “Spin wave acoustics of antiferromagnetic structures as magnetoacoustic metamaterialsPhys. Usp. 54 573–604 (2011)
    42.25.Bs, 43.20.+g, 43.35.+d, 43.35.Rw, 43.40.+s, 75.50.Ee, 75.70.−i (all)
  7. A.V. Vashkovsky, E.H. Lock “On the relationship between magnetostatic wave energy and dispersion characteristics in ferrite structuresPhys. Usp. 54 281–290 (2011)
    41.20.Gz, 41.20.Jb, 75.70.−i (all)
  8. 90th anniversary of the birth of A S Borovik-Romanov (Scientific session of the Physical Sciences Division of the Russian Academy of Sciences, 24 March 2010)Phys. Usp. 53 843–858 (2010)
    01.10.Fv, 01.60.+q, 01.65.+g, 03.75.Hh, 67.30.er, 75.30.Ds, 75.40.−s, 75.45.+j, 75.50.Ee, 75.50.−y, 76.60.−k, 75.70.−i (all)
  9. A.I. Smirnov, L.E. Svistov et alTriangular lattice antiferromagnet RbFe(MoO4)2Phys. Usp. 53 844–848 (2010)
    75.40.−s, 75.50.Ee, 75.70.−i (all)
  10. A.I. Morosov, A.S. Sigov “Surface spin-flop transition in an antiferromagnetPhys. Usp. 53 677–689 (2010)
    75.30.Kz, 75.40.−s, 75.50.Ee, 75.60.Ch, 75.70.−i (all)
  11. I.N. Askerzade “Study of layered superconductors in the theory of an electron — phonon coupling mechanismPhys. Usp. 52 977–988 (2009)
    74.20.−z, 74.70.Ad, 74.78.Fk (all)
  12. I.A. Garifullin “The superconductor/ferromagnet proximity effect and its potential application in spintronicsPhys. Usp. 49 652–655 (2006)
    01.10.Fv, 74.45.+c, 74.78.Fk (all)
  13. V.B. Kopeliovich “Exotic baryon resonances and the model of chiral solitonsPhys. Usp. 47 309–318 (2004)
    12.39.Dc, 12.39.Fe, 14.20.−c (all)
  14. A.V. Vedyaev “Use of spin-polarized current in spintronicsPhys. Usp. 45 1296–1299 (2002)
    73.40.Gk, 73.40.Rw, 75.70.−i, 85.30.Mn (all)
  15. L.M. Blinov, V.M. Fridkin et alTwo-dimensional ferroelectricsPhys. Usp. 43 243–257 (2000)
    75.70.−i, 77.80.−e (all)
  16. I.V. Kukushkin “Experimental verification of the skyrmion conceptPhys. Usp. 40 532–534 (1997)
    12.39.Dc, 73.40.Hm
  17. V.N. Dudorov, V.V. Randoshkin, R.V. Telesnin “Synthesis and physical properties of single-crystal films of rare-earth iron garnetsSov. Phys. Usp. 20 505–527 (1977)
    68.55.+b, 75.70.−i, 78.65.Jd, 75.30.Cr (all)
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