Exceptional behavior of a high-temperature superconductor in proximity to a ferromagnet in a bilayer film, La 0.67 Sr 0.33 MnO 3 /YBa 2 Cu 3 O 7

We studied the electronic properties of a high-temperature superconductor in proximity to a ferromagnetic material in a bilayer film of La Sr MnO (LSMO)/YBa Cu O (YBCO). High-quality single-crystalline films of YBCO and LSMO/YBCO were grown epitaxially on an SrTiO (001) surface. Magnetization data o...

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Veröffentlicht in:Nanoscale 2024-05, Vol.16 (20), p.9819-9826
Hauptverfasser: Singh, Ankita, Datta, Sawani, Pandeya, Ram Prakash, Kandukuri, Srinivas C, Bapat, Rudheer, Parmar, Jayesh, Maiti, Kalobaran
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Sprache:eng
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Zusammenfassung:We studied the electronic properties of a high-temperature superconductor in proximity to a ferromagnetic material in a bilayer film of La Sr MnO (LSMO)/YBa Cu O (YBCO). High-quality single-crystalline films of YBCO and LSMO/YBCO were grown epitaxially on an SrTiO (001) surface. Magnetization data of the LSMO/YBCO bilayer exhibit ferromagnetic transition at about 255 K, which is much smaller than the Curie temperature of bulk LSMO. Experimental data show the emergence of magnetic anisotropy with cooling, which becomes significantly stronger in the superconducting phase. The onset temperature of diamagnetism is observed at 86 K in the YBCO sample for the out-of-plane magnetization and at 89 K in the in-plane data. Interestingly, the diamagnetism sets in at about 86 K for both magnetization directions in the LSMO/YBCO film despite the presence of the ferromagnetic LSMO layer underneath. Ba 4d and Y 3d core-level spectra show different surface and bulk electronic structures. Surface contribution is reduced significantly in the LSMO/YBCO sample, suggesting enhanced bulk-like behavior due to an enhancement of electron density near the surface arising from charge transfer across the interface. These results reveal an outstanding platform for on-demand tuning of properties without affecting the superconductivity of the system for the exploration of fundamental science and applications in advanced technology.
ISSN:2040-3364
2040-3372
DOI:10.1039/D3NR06636C