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Showing results 1 to 20 of 55  next >
Issue DateTitleAuthor(s)
2021Alterations in the magnetic and electrodynamic properties of hard-soft Sr0.5Ba0.5Eu0.01Fe12O19/NixCuyZnwFe2O4 nanocompositesAlmessiere, M. A.; Slimani, Y.; Attia, H.; Sheikh, S. I. M.; Sadaqat, A.; Vakhitov, M. G.; Klygach, D. S.; Sertkol, M.; Baykal, A.; Trukhanov, A. V.
2022Amorphous FeCoCrSiB Ribbons with Tailored Anisotropy for the Development of Magnetic Elements for High Frequency ApplicationsKurlyandskaya, G. V.; Lezama, L.; Pasynkova, A. A.; Volchkov, S. O.; Lukshina, V. A.; Larrañaga, A.; Dmitrieva, N. V.; Timofeeva, A. V.; Orue, I.
2021Coarse technogenic material in urban surface deposited sediments (Usds)Seleznev, A.; Ilgasheva, E.; Yarmoshenko, I.; Malinovsky, G.
2013Comparative study of the iron cores in human liver ferritin, its pharmaceutical models and ferritin in chicken liver and spleen tissues using Mössbauer spectroscopy with a high velocity resolutionAlenkina, I. V.; Oshtrakh, M. I.; Klepova, Y. V.; Dubiel, S. M.; Sadovnikov, N. V.; Semionkin, V. A.
2019Comprehensive study of the magnetic phase transitions in Tb3Co combining thermal, magnetic and neutron diffraction measurementsHerrero, A.; Oleaga, A.; Gubkin, A. F.; Frontzek, M. D.; Salazar, A.; Baranov, N. V.
2019Correlated electronic structure, orbital-dependent correlations, and Lifshitz transition in tetragonal FeSSkornyakov, S. L.; Leonov, I.
2018Correlation strength, Lifshitz transition, and the emergence of a two-dimensional to three-dimensional crossover in FeSe under pressureSkornyakov, S. L.; Anisimov, V. I.; Vollhardt, D.; Leonov, I.
2022Crystal Structure and Concentration-Driven Phase Transitions in Lu(1−x)ScxFeO3 (0 ≤ x ≤ 1) Prepared by the Sol–Gel MethodPakalniškis, A.; Alikin, D. O.; Turygin, A. P.; Zhaludkevich, A. L.; Silibin, M. V.; Zhaludkevich, D. V.; Niaura, G.; Zarkov, A.; Skaudžius, R.; Karpinsky, D. V.; Kareiva, A.
2022A disorder-sensitive emergent vortex phase identified in high- T csuperconductor (Li,Fe)OHFeSeLi, D.; Shen, P.; Tian, J.; He, G.; Ni, S.; Wang, Z.; Xi, C.; Pi, L.; Zhang, H.; Yuan, J.; Jin, K.; Talantsev, E. F.; Yu, L.; Zhou, F.; Hänisch, J.; Dong, X.; Zhao, Z.
2020Effect of 200 MeV Ag16+ swift heavy ion irradiation on structural and magnetic properties of M-type barium hexaferritePackiaraj, G.; Sakthipandi, K.; Hossain, A.
2021Effect of cobalt content on the properties of quintuple perovskites Sm2Ba3Fe5-xCoxO15-δGolovachev, I. B.; Mychinko, M. Y.; Volkova, N. E.; Gavrilova, L. Y.; Raveau, B.; Maignan, A.; Cherepanov, V. A.
2022Effect of Doping on the Electronic Structure of the Earth’s Lower Mantle Compounds: FeXO3 with X = C, Al, SiChernov, E. D.; Dyachenko, A. A.; Lukoyanov, A. V.
2019Effect of particle diameter and packing density on heating of metallic iron particles in alternating magnetic fieldKrekhno, R. V.; Safronov, A. P.; Beketov, I. V.
2010Effect of the Magnetic Prehistory on the Low-Temperature Heat Capacity of the La(Fe0.88Al0.12-xSix)13 CompoundsPodgornykh, S. M.; Chirkova, I. M.
2021Ellinaite, CaCr2O4, a New Natural Post-Spinel Oxide from Hatrurim Basin, Israel, and Juína Kimberlite Field, BrazilSharygin, V. V.; Britvin, S. N.; Kaminsky, F. V.; Wirth, R.; Nigmatulina, E. N.; Yakovlev, G. A.; Novoselov, K. A.; Murashko, M. N.
2016Exceptional Layered Ordering of Cobalt and Iron in PerovskitesLebedev, O. I.; Turner, S.; Caignaert, V.; Cherepanov, V. A.; Raveau, B.
2018Experimental observation of chiral magnetic bobbers in B20-type FeGeZheng, F.; Rybakov, F. N.; Borisov, A. B.; Song, D.; Wang, S.; Li, Z. -A.; Du, H.; Kiselev, N. S.; Caron, J.; Kovács, A.; Tian, M.; Zhang, Y.; Blügel, S.; Dunin-Borkowski, R. E.
2019Extended Magnetic Dome Induced by Low Pressures in Superconducting FeSe1-x SxHolenstein, S.; Stahl, J.; Shermadini, Z.; Simutis, G.; Grinenko, V.; Chareev, D. A.; Khasanov, R.; Orain, J. -C.; Amato, A.; Klauss, H. -H.; Morenzoni, E.; Johrendt, D.; Luetkens, H.
2019Features of focusing magnetoelastic waves in YIG crystalsBakharev, S. M.; Borich, M. A.; Savchenko, S. P.
2022GdxFe3-xO4 Nanoparticles with Silane Shell as Potential Theranostic Agent for Cancer TreatmentZibert, A. V.; Lissovskaya, L. I.; Korolkov, I. V.; Zdorovets, M. V.