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Structural, magnetic, and electronic properties of a GdAsSe single crystal: Experimental and theoretical studies
期刊文章

Structural, magnetic, and electronic properties of a GdAsSe single crystal: Experimental and theoretical studies

R. Kalaivanan, B. Venkatesan, B. Dundi Sri Chandana, R.K. Ulaganathan, G. Senthil Murugan, K. Moovendaran, J. Khatua, L.-H. Su, W. Zhou, X. Xu, …
Physical Review B, 卷.109(18)
2024
Web of Science ID: WOS:001237292100008

摘要

Antiferromagnetism Density functional theory Electron spin resonance spectroscopy Electronic properties Electrospinning Entropy Gadolinium compounds Ground state Magnetic moments Phase diagrams Single crystals Specific heat Antiferromagnetic phase transition Electron spin resonance measurements Field-induced High quality single crystals Magnetic and electronic properties Magnetic phase diagrams Magnetic-field Measurements of Single crystal growth Theoretical study Magnetic susceptibility
We report high-quality single-crystal growth, x-ray diffraction, magnetic susceptibility [χ(T,H)], magnetization [M(H)], heat capacity [CP(T,H)], electrical resistivity [ρ(T,H)], and electron spin resonance (ESR) measurements of GdAsSe as functions of temperature and magnetic field. We identify an antiferromagnetic phase transition at TN∼11.9±0.2 K and construct magnetic phase diagrams for H||ab and H||c axes based on the χ(T,H) and CP(T,H) data. Isothermal M(H) curves along the H||ab direction at 3 K exhibit a field-induced spin orientation at HC∼3.78T. Both M(H) and χ(T,H) indicate an easy-plane-type anisotropy. The Curie-Weiss analysis of the high-temperature paramagnetic χ(T) yields a negative Weiss temperature, suggesting dominant antiferromagnetic interactions between the Gd ions. Magnetic entropy reaches 83% of R ln8 at TN. The presence of residual entropy above TN and the persistence of ESR critical broadening up to ∼3TN alludes to a degree of magnetic frustration in the studied material. The ρ(T) data above TN is well fitted to the Bloch-Grüneisen theory for metals. Further, density functional theory calculations reveal an antiferromagnetic ground state where the Gd atoms are coupled ferromagnetically in the ab plane and antiferromagnetically along the c axis. © 2024 American Physical Society.

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https://www.scopus.com/inward/record.uri?eid=2-s2.0-85192695100&doi=10.1103%2fPhysRevB.109.184420&partnerID=40&md5=0138e01ed361d479959984681e895ffc檢視

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引用書目主題
5 Physics
5.30 Superconductor Science
5.30.755 Topological Superconductivity
Web Of Science研究領域
Materials Science, Multidisciplinary
Physics, Applied
Physics, Condensed Matter
ESI研究領域
Physics

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