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Granular superconductivity and magnetic-field-driven recovery of macroscopic coherence in a cuprate/manganite multilayer

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posted on 2021-07-19, 02:26 authored by Benjamin MallettBenjamin Mallett, J Khmaladze, P Marsik, E Perret, A Cerreta, M Orlita, N Biškup, M Varela, C Bernhard
We show that in Pr0.5La0.2Ca0.3MnO3/YBa2Cu3O7 (PLCMO/YBCO) multilayers the low temperature state of YBCO is very resistive and resembles that of a granular superconductor or a frustrated Josephson-junction network. Notably, a coherent superconducting response can be restored with a large magnetic field which also suppresses the charge-orbital order in PLCMO. This coincidence suggests that the granular superconducting state of YBCO is induced by the charge-orbital order of PLCMO. The coupling mechanism and the nature of the induced inhomogeneous state in YBCO remain to be understood.

History

Preferred citation

Mallett, B. P. P., Khmaladze, J., Marsik, P., Perret, E., Cerreta, A., Orlita, M., Biškup, N., Varela, M. & Bernhard, C. (2016). Granular superconductivity and magnetic-field-driven recovery of macroscopic coherence in a cuprate/manganite multilayer. Physical Review B, 94(18), 180503-. https://doi.org/10.1103/PhysRevB.94.180503

Journal title

Physical Review B

Volume

94

Issue

18

Publication date

2016-01-01

Pagination

180503

Publisher

American Physical Society (APS)

Publication status

Published

Online publication date

2016-11-08

ISSN

2469-9950

eISSN

2469-9969

Article number

180503

Language

en

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