S
Seong-Cho Yu
Researcher at Ulsan National Institute of Science and Technology
Publications - 502
Citations - 6884
Seong-Cho Yu is an academic researcher from Ulsan National Institute of Science and Technology. The author has contributed to research in topics: Magnetization & Curie temperature. The author has an hindex of 36, co-authored 498 publications receiving 6113 citations. Previous affiliations of Seong-Cho Yu include Korea Institute of Science and Technology & Chungbuk National University.
Papers
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Thermomagnetic properties and spin-wave excitation of the nanocrystalline Fe68.5Co5Mo3Cu1Si13.5B9 alloy
TL;DR: In this article, the effect of annealing temperatures on the spin-wave excitations for the nanocrystalline Fe 68.5 Co 5 Mo 3 Cu 1 Si 13.5 B 9 alloy has been investigated by observation of their low temperature magnetization curves.
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Magnetic Relaxation Behavior in Nd $_{0.5}$ Sr $_{0.5}$ MnO $_{3}$ : Observation of Negative Imaginary Component of ac Magnetic Susceptibility
TL;DR: In this article, short time relaxation effect in Nd0.5Sr 0.5MnO3 manganites was observed and explained at the frame of Landau theory of phase transition, where the coexistence of metastable and stable phases is considered.
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Phase diagram and EXAFS study of La0.7Ca0.3-xBaxMnO3 manganites
TL;DR: The phase diagram and local structure of La 07 Ca 03- x Ba x MnO 3 ( x = 0, 003, 006, ; 03) lanthanum manganites were studied by extended X-ray absorption fine structure (EXAFS) analysis.
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Crystal symmetry and pressure effects on the properties of mixed-valence manganites
Alexander N. Ulyanov,Alexander N. Ulyanov,Igor S. Maksimov,Igor S. Maksimov,Emmanuel B. Nyeanchi,Seong-Cho Yu,Yu. V. Medvedev,N.Yu. Starostyuk,Björn Sundqvist +8 more
TL;DR: A lattice structure effect on the magnetic and magnetotransport properties of La 0.7Ca(0.3-x)SrxMnO3 lanthanum manganites have been studied.
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Ferromagnetism-to-Paramagnetism Transition in the ZnMnO System
TL;DR: The magnetic properties of Mnand P-doped ZnO prepared by using the solid state reaction and pulsed laser deposition (PLD) were investigated by measuring the magnetization and the absorption derivative of the electron paramagnetic resonance (EPR) as discussed by the authors.