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Общее количество найденных документов : 45
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1.

APLESNIN S. S. CRITICAL-BEHAVIOR OF DILUTED ISING MAGNETS WITH ANISOTROPIC EXCHANGE INTERACTION DISTRIBUTION/S. S. APLESNIN // FIZIKA TVERDOGO TELA:MEZHDUNARODNAYA KNIGA, 1984. т.Vol. 26,N Is. 11.-С.3355-3361
2.

Cherkasskii M. Nutation resonance in ferromagnets/M. Cherkasskii, M. Farle, A. Semisalova // Physical Review B, 2020. т.Vol. 102,N Is. 18.- Ст.184432
3.

Commensurate spin density wave in LaFeAsO: A local probe study/H. H. Klauss [et al.] // PHYSICAL REVIEW LETTERS:AMER PHYSICAL SOC, 2008. т.Vol. 101,N Is. 7.- Ст.77005
4.

Edelman I. Oxide glasses with magnetic nanoparticles: transparent magnets (Faraday rotation and electron magnetic resonance studies)/I. .. Edelman, J. .. Kliava // Physica Status Solidi B - Basic Solid State Physics, 2009. т.Vol. 246,N Is. 10.-С.2216-2231
5.

Effect of copper on the properties of Pr-Dy-Fe-Co-B sintered magnets/E. N. Kablov [et al.] // Russian Metallurgy (Metally):Pleiades Publishing, 2014. т.Vol. 2014,N Is. 1.-С.55-59
6.

Effective easy-axis anisotropy of the two-sublattice single-chain magnet with twisted easy planes/M. S. Shustin, M. N. Potkina // Nanosystems - Physics Chemistry Mathematics, 2020. т.Vol. 11,N Is. 6.-С.659-665;Наносистемы: физика, химия, математика
7.

Effects of correlated inhomogeneities of the spectral properties of disordered ferro magnets and superlattices/V. A. Ignatchenko // IV Euro-Asian Symposium "Trends in MAGnetism" Nanospintronics (EASTMAG-2010). School for young scientist "Spintronics". -Ekaterinburg, 2010.-С.300 (Invited)
8.

Flux pinning docking interfaces in satellites using superconducting foams as trapped field magnets/M. R. Koblischka, A. Koblischka-Veneva, D. Gokhfeld [et al.] // IEEE Transactions on Applied Superconductivity, 2022. т.Vol. 32,N Is. 4.- Ст.4900105
9.

Komogortsev S. V. Law of approach to magnetic saturation in nanocrystalline and amorphous ferromagnets with improved transition behavior between power-law regimes/S. V. Komogortsev, R. S. Iskhakov // Journal of Magnetism and Magnetic Materials:Elsevier, 2017. т.Vol. 440.-С.213-216
10.

Kuzmin E. V. Ground-state and excitation spectrum of disordered heisenberg magnets/E. V. Kuzmin // Zhurnal Eksperimentalnoi i Teoreticheskoi Fiziki, 1984. т.Vol. 86,N Is. 3.-С.981-994
11.

Local electron structure and magnetization in beta-Fe86Mn13C/L. I. Kveglis [et al.] // Superlattices and Microstructures, 2009. т.Vol. 46,N Is. 1-2.-С.114-120
12.

Losses of magnetite iron in wet separation/E. K. Yakubailik [et al.] // Steel in Translation:Allerton Press Incorporation, 2016. т.Vol. 46,N Is. 6.-С.390-394
13.

Low-temperature resistance and magnetoresistance hysteresis in polycrystalline (La0.5Eu0.5)(0.7)Pb0.3MnO3/K. A. Shaykhutdinov [et al.] // JOURNAL OF APPLIED PHYSICS:AMER INST PHYSICS, 2011. т.Vol. 109,N Is. 5.- Ст.53711
14.

Magnetic properties and nonmagnetic phases formation in (Fe/Si)(n) films/S. N. Varnakov [et al.] // JOURNAL OF APPLIED PHYSICS:AMER INST PHYSICS, 2008. т.Vol. 104,N Is. 9.- Ст.94703
15.

MARTYNOV S. N. CORRELATION-FUNCTIONS AND ELECTRON-SPIN-RESONANCE LINEWIDTH OF TWO-DIMENSIONAL HEISENBERG MAGNETS/S. N. MARTYNOV // FIZIKA TVERDOGO TELA:MEZHDUNARODNAYA KNIGA, 1986. т.Vol. 28,N Is. 10.-С.3006-3011
16.

Martynov S. N. Single-ion-anisotropy and electron-spin-resonance linewidth in quasi-low-dimensional heisenberg magnets/S. N. Martynov // Physica Status Solidi B - Basic Research, 1988. т.Vol. 146,N Is. 2.-С.691-696
17.

Metal-organic magnets with large coercivity and ordering temperatures up to 242°C/P. Perlepe, I. Oyarzabal, A. Mailman [et al.] // Science, 2020. т.Vol. 370,N Is. 6516.-С.587-591
18.

Nanoparticle-containing glasses co-doped with transition and rare earth elements: comparative studies of transparent magnets/I. S. Edelman [et al.] // Physics and chemistry of glasses: European journal of glass science and technology Part B:Society of Glass Technology, 2012. т.Vol. 53,N Is. 2.-С.37-44
19.

Nanoparticle-containing oxide glasses: transparent magnets/I. Edelman, O. Ivanova, R. Ivantsov [et al.] // International Conference on the Chemistry of Glasses and Glass-Forming Melts, 2011.-С.13
20.

Nonmonotonic Behavior of Magnetoresistance, R(H) Hysteresis, and Low-Temperature Heat Capacity of the BaPb0.75Bi0.25O3 Superconductor in a Magnetic Field: Possible Manifestations of Phase Separation/D. A. Balaev [et al.] // JOURNAL OF EXPERIMENTAL AND THEORETICAL PHYSICS:MAIK NAUKA/INTERPERIODICA/SPRINGER, 2010. т.Vol. 110,N Is. 4.-С.584-593
 

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