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Oleksii (Aleksei) Bludov
Oleksii (Aleksei) Bludov
B. Verkin Institute for Low Temperature Physics and Engineering of the NAS of Ukraine
Verified email at ilt.kharkov.ua
Title
Cited by
Cited by
Year
Magnetic properties of the antiferromagnetic spin-1/2 chain system β-TeVO4.
Y Savina, O Bludov, V Pashchenko, SL Gnatchenko, P Lemmens, ...
Physical Review B 84, 104447, 2011
552011
Asymmetrically shaped hysteresis loop in exchange-biased FeNi/FeMn film
SL Gnatchenko, DN Merenkov, AN Bludov, VV Pishko, YA Shakhayeva, ...
J. Magn. Magn. Mater 307 (2), 263-267, 2006
31*2006
Microstructural and transport properties of superconducting FeTe0. 65Se0. 35 crystals
AG Sivakov, SI Bondarenko, AI Prokhvatilov, VP Timofeev, AS Pokhila, ...
Superconductor Science and Technology 30 (1), 015018, 2016
162016
Magnetic properties of a GdCr3 (BO3) 4 single crystal
AN Bludov, YO Savina, VA Pashchenko, SL Gnatchenko, VV Mal'tsev, ...
Low Temperature Physics 44 (5), 423-427, 2018
15*2018
Rotational magnetocaloric effect in TbAl3 (BO3) 4
MI Pashchenko, VA Bedarev, DN Merenkov, AN Bludov, VA Pashchenko, ...
Low Temperature Physics 43 (5), 631-635, 2017
142017
Exchange anisotropy in polycrystalline Fe Ni∕ Fe Mn films with hysteresis loop asymmetry
DN Merenkov, AN Bludov, SL Gnatchenko, M Baran, R Szymczak, ...
Low Temperature Physics 33 (11), 957-964, 2007
142007
Resistive and magnetoresistive properties of compacted CrO2 powders with different types of intergranular dielectric layers
NV Dalakova, BI Belevtsev, EY Beliayev, AN Bludov, VN Pashchenko, ...
Low Temperature Physics 38 (12), 1121-1128, 2012
132012
Magnetic field-induced phase transitions in the antiferromagnet Nd0. 6Dy0. 4Fe3 (BO3) 4
GA Zvyagina, KR Zhekov, IV Bilych, AA Zvyagin, AN Bludov, ...
Low Temperature Physics 40 (2), 146-150, 2014
122014
Features of magnetic and magnetoelectric properties, HT phase diagram of GdCr3 (BO3) 4
A Bludov, Y Savina, M Kobets, V Khrustalyov, V Savitsky, S Gnatchenko, ...
Journal of Magnetism and Magnetic Materials 512, 167010, 2020
102020
Growth and Spectroscopic and Magnetic Properties of TbCr3(BO3)4 Crystals
NN Kuzmin, VV Maltsev, EA Volkova, NI Leonyuk, KN Boldyrev, ...
Inorganic Materials 56, 828-835, 2020
102020
A study of the magnetic properties of a quasi-one-dimensional magnet β-TeVO4 in the frame of the J1–J2 model
YO Savina, AN Bludov, VA Pashchenko, SL Gnatchenko, YV Savin, ...
Low Temperature Physics 41 (8), 659-661, 2015
102015
Interrelation of superconductivity and magnetism in FeSe1− x Te x compounds. Pressure effects
AS Panfilov, VA Pashchenko, GE Grechnev, VA Desnenko, ...
Low Temperature Physics 40 (7), 615-620, 2014
92014
The magnetic properties of the LaCr3 (BO3) 4 crystal
AN Bludov, YO Savina, VA Pashchenko, SL Gnatchenko, IV Kolodiy, ...
Low Temperature Physics 46 (6), 643-645, 2020
82020
Features of the magnetic properties of quasi-one-dimensional β-TeVO4 magnets at low temperatures.
YO Savina, OM Bludov, VA Pashchenko, SL Gnatchenko, P Lemmens, ...
Low Temperature Physics 41 (4), 283, 2015
82015
Surface magnetic anisotropy of CoFe2O4 nanoparticles with a giant low-temperature hysteresis
KA Mozul', LP Ol'khovik, ZI Sizova, AN Bludov, VA Pashchenko, ...
Low Temperature Physics 39 (4), 365-369, 2013
82013
Antiferromagnetic resonance in a GdCr3 (BO3) 4 crystal
AN Bludov, YO Savina, MI Kobets, VA Pashchenko, SL Gnatchenko, ...
Low Temperature Physics 44 (5), 453-455, 2018
72018
Antiferromagnetic resonance in crystalline PrFe3 (BO3) 4
AN Bludov, VA Pashchenko, MI Kobets, VA Bedarev, DN Merenkov, ...
Low temperature physics 44 (2), 139-143, 2018
7*2018
Magnetic properties of DyCr3 (BO3) 4
AN Bludov, YO Savina, VA Pashchenko, SL Gnatchenko, T Zajarniuk, ...
Low Temperature Physics 46 (7), 697-703, 2020
6*2020
Anisotropy of the magnetic properties of the FeTe0.65Se0.35 superconductor.
SI Bondarenko, OM Bludov, A Wisniewski, D Gawryluk, IS Dudar, ...
Low Temperature Physics 41 (11), 897, 2015
62015
Концентрационные аномалии намагниченности кристаллов HgSe:Fe
Н Попенко, Б Бекиров, И Иванченко, A Блудов, В Пащенко
Письма в Журнал экспериментальной и теоретической физики 100 (4), 272-275, 2014
5*2014
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