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Numerical simulation of magnetization process in antiferromagnetic-ferromagnetic bilayer with compensated interfaceUSOV, N. A; GUDOSHNIKOV, S. A.Journal of magnetism and magnetic materials. 2006, Vol 300, Num 1, pp 164-169, issn 0304-8853, 6 p.Conference Paper

DC relaxation SQUID in magnetometer for geophysical measurementsGUDOSHNIKOV, S. A; MASLENNIKOV, Y. V; SNIGIREV, O. V et al.Soviet journal of communications technology & electronics. 1992, Vol 37, Num 1, pp 127-130, issn 8756-6648Article

A femtoamperemeter based on a superconducting quantum interferometer and a bulk transformerTARASOV, M. A; KALABUKHOV, A. S; KOVTONYUK, S. A et al.Journal of communications technology & electronics. 2003, Vol 48, Num 12, pp 1404-1409, issn 1064-2269, 6 p.Article

Properties of Dense Assemblies of Magnetic Nanoparticles Promising for Application in BiomedicineUSOV, N. A; GUDOSHNIKOV, S. A; SEREBRYAKOVA, O. N et al.Journal of superconductivity and novel magnetism. 2013, Vol 26, Num 4, pp 1079-1083, issn 1557-1939, 5 p.Conference Paper

Magnetic microscope based on YBCO bicrystal thin film dc SQUID operating at 77 KGUDOSHNIKOV, S. A; VENGRUS, I. I; ANDREEV, K. E et al.Proceedings of the International Cryogenic Engineering Conference. 1994, Vol 34, pp 883-886, issn 0308-5422Conference Paper

Flux guide for high-Tc SQUID microscope with high spatial resolutionGUDOSHNIKOV, S. A; LIUBIMOV, B. Ya; MATVEETS, L. V et al.Physica. C. Superconductivity and its applications. 2002, Vol 368, Num 1-4, pp 66-69Conference Paper

A direct readout high-Tc dc SQUID electronics with ac bias and a liquid-nitrogen-cooled preamplifierGUDOSHNIKOV, S. A; MATVEETS, L. V; WEIDL, R et al.IEEE transactions on applied superconductivity. 1999, Vol 9, Num 2, pp 4397-4399, issn 1051-8223, 3Conference Paper

A dc SQUID-based magnetic microscope study of the magnetic properties of the Ni thin filmsGUDOSHNIKOV, S. A; UKHANSKY, N. N; VENGRUS, I. I et al.IEEE transactions on applied superconductivity. 1997, Vol 7, Num 2, pp 2542-2544, issn 1051-8223, 3Conference Paper

Influence of applied tensile stress on the magnetic behaviour of Co-rich amorphous microwiresGUDOSHNIKOV, S. A; LJUBIMOV, B. Ya; PALVANOV, P. S et al.Physica status solidi. A, Applications and materials science (Print). 2009, Vol 206, Num 4, pp 625-629, issn 1862-6300, 5 p.Conference Paper

HTS scanning SQUID microscope with high spatial resolution for room temperature samplesGUDOSHNIKOV, S. A; LIUBIMOV, B. Ya; DERYUZHKINA, Yu. V et al.Physica. C. Superconductivity and its applications. 2002, Vol 372-76, pp 166-169, 1Conference Paper

Study of amorphous ferromagnetic microwires using a scanning SQUID microscopeGUDOSHNIKOV, S. A; LIUBIMOV, B. Ya; MATVEETS, L. V et al.Physica. C. Superconductivity and its applications. 2002, Vol 372-76, pp 271-273, 1Conference Paper

AC Magnetic Technique to Measure Specific Absorption Rate of Magnetic NanoparticlesGUDOSHNIKOV, S. A; LIUBIMOV, B. Y; SITNOV, Y. S et al.Journal of superconductivity and novel magnetism. 2013, Vol 26, Num 4, pp 857-860, issn 1557-1939, 4 p.Conference Paper

High-resolution scanning magnetometry based on a superconducting quantum interferometerGUDOSHNIKOV, S. A; MATVEETS, L. V; MIGULIN, V. V et al.Journal of communications technology & electronics. 2001, Vol 46, Num 7, pp 729-740, issn 1064-2269Article

A scanning SQUID microscopy of the superconducting thin film samplesGUDOSHNIKOV, S. A; KALABUKHOV, A. S; CHUPAKHIN, S. A et al.International cryogenic engineering conference. 1998, pp 423-426, isbn 0-7503-0597-5Conference Paper

Magnetic field maps of YBCO thin films obtained by scanning SQUID microscopy for HTSC microelectronicsANDREEV, K. E; BOBYL, A. V; GUDOSHNIKOV, S. A et al.Superconductor science & technology (Print). 1997, Vol 10, Num 5, pp 366-370, issn 0953-2048Article

Direct measurements of the magnetic field induced by optically polarized 3He atomsGUDOSHNIKOV, S. A; KOZLOV, A. N; MASLENNIKOV, Y. V et al.IEEE transactions on magnetics. 1991, Vol 27, Num 2, pp 2449-2451, issn 0018-9464, 3 p., p.3Conference Paper

The influence of a demagnetizing field on hysteresis losses in a dense assembly of superparamagnetic nanoparticlesGUDOSHNIKOV, S. A; LIUBIMOV, B. Ya; POPOVA, A. V et al.Journal of magnetism and magnetic materials. 2012, Vol 324, Num 22, pp 3690-3694, issn 0304-8853, 5 p.Article

Ground state magnetization distribution and characteristic width of head to head domain wall in Fe-rich amorphous microwireGUDOSHNIKOV, S. A; GREBENSHCHIKOV, Yu. B; LJUBIMOV, B. Ya et al.Physica status solidi. A, Applications and materials science (Print). 2009, Vol 206, Num 4, pp 613-617, issn 1862-6300, 5 p.Conference Paper

Magnetic structure of a nanoparticle in mean-field approximationUSOV, N. A; GUDOSHNIKOV, S. A.Journal of magnetism and magnetic materials. 2005, Vol 290-91, pp 727-730, issn 0304-8853, 4 p., 1Conference Paper

Magnetic volcanos in gadolinium Langmuir-Blodgett filmsTISHIN, A. M; SNIGIREV, O. V; KHOMUTOV, G. B et al.Journal of magnetism and magnetic materials. 2001, Vol 234, Num 3, pp 499-504, issn 0304-8853Article

Magnetic properties of Ho measured by a scanning SQUID microscopeGUDOSHNIKOV, S. A; KALABUKHOV, A. S; CHUPAKHIN, S. A et al.IEEE transactions on applied superconductivity. 1999, Vol 9, Num 2, pp 4385-4388, issn 1051-8223, 3Conference Paper

Direct-coupled electronics for high-temperature superconductor DC SQUID-based magnetometerGUDOSHNIKOV, S. A; UKHANSKY, N; VENGRUS, I. I et al.IEEE transactions on instrumentation and measurement. 1997, Vol 46, Num 2, pp 624-628, issn 0018-9456Conference Paper

Magnetometer on the base of DC integral relaxation squidGUDOSHNIKOV, S. A; MASLENNIKOV, YU. V; REZNIKOV, A. E et al.Radiotehnika i èlektronika. 1990, Vol 35, Num 1, pp 226-229, issn 0033-8494Article

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