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Reentrant superconductivity in YBa2_2Cu3_3O7−d_{7-d} microstructured particles

Published 21 May 2020 in cond-mat.supr-con | (2005.10894v1)

Abstract: A reentrant superconducting effect was observed in YBCO particles as a consequence of their size and microstructure. It rises from the coexistence between bulk superconductivity and surface ferromagnetism, where the enhanced magneto-electric coupling induced by broken spatial-inversion symmetry in layers near structural defects plays a very important role on surface ferromagnetism. The study assumes grain boundaries inside the particles act as additional surface regions that enhance the ferromagnetic properties. Magnetic and superconducting properties as a function of particle size were studied. Particularly, the 385 nm particles which were the ones that exhibited the reentrant superconducting effect. The Ginzburg-Landau parameter and the critical temperatures are k∼1.29k \sim 1.29, T<em>c1<em>{c1} = 92 ±\pm 5 K, and T</em>c2</em>{c2} = 10 ±\pm 3 K.

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