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Magnetic transition and large reversible magnetocaloric effect in EuCu1.75P2 compound
Authors:Huo De-Xuan  Liao Luo-Bing  Li Ling-Wei  Li Miao  Qian Zheng-Hong
Affiliation:a Institute of Materials Physics, Hangzhou Dianzi University, Hangzhou 310018, China;b Center for Integrated Spintronic Device, Hangzhou Dianzi University, Hangzhou 310018, China
Abstract:The magnetocaloric effect (MCE) in EuCu1.75P2 compound is studied by the magnetization and heat capacity measurements. Magnetization and modified Arrott plots indicate that the compound undergoes a second-order phase transition at TC~51 K. A large reversible MCE is observed around TC. The values of maximum magnetic entropy change (-ΔSMmax) reach 5.6 J·kg-1·K-1 and 13.3 J·kg-1·K-1 for the field change of 2 T and 7 T, respectively, with no obvious hysteresis loss in the vicinity of Curie temperature. The corresponding maximum adiabatic temperature changes (ΔTadmax) are evaluated to be 2.1 K and 5.0 K. The magnetic transition and the origin of large MCE in EuCu1.75P2 are also discussed.
Keywords:EuCu1.75P2 compound  magnetocaloric effect  magnetic transition  critical behavior
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