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Magnetic field dependence of the proximity-induced triplet superconductivity at ferromagnet/superconductor interfaces

Magnetic field dependence of the proximity-induced triplet superconductivity at ferromagnet/superconductor interfaces

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KALCHEIM, Yoav, Israel FELNER, Oded MILLO, Tal KIRZHNER, Gad KOREN, Angelo DI BERNARDO, Mehmet EGILMEZ, Mark G. BLAMIRE, Jason W. A. ROBINSON, 2014. Magnetic field dependence of the proximity-induced triplet superconductivity at ferromagnet/superconductor interfaces. In: Physical Review B. 89(18), 180506(R). ISSN 1098-0121. eISSN 1550-235X. Available under: doi: 10.1103/PhysRevB.89.180506

@article{Kalcheim2014-05-21Magne-47148, title={Magnetic field dependence of the proximity-induced triplet superconductivity at ferromagnet/superconductor interfaces}, year={2014}, doi={10.1103/PhysRevB.89.180506}, number={18}, volume={89}, issn={1098-0121}, journal={Physical Review B}, author={Kalcheim, Yoav and Felner, Israel and Millo, Oded and Kirzhner, Tal and Koren, Gad and Di Bernardo, Angelo and Egilmez, Mehmet and Blamire, Mark G. and Robinson, Jason W. A.}, note={Article Number: 180506(R)} }

Felner, Israel Felner, Israel Di Bernardo, Angelo Egilmez, Mehmet eng 2014-05-21 2019-10-08T13:01:05Z Koren, Gad Kalcheim, Yoav Koren, Gad Robinson, Jason W. A. Blamire, Mark G. Kalcheim, Yoav Di Bernardo, Angelo Kirzhner, Tal Millo, Oded Blamire, Mark G. Millo, Oded Kirzhner, Tal Egilmez, Mehmet Robinson, Jason W. A. Long-ranged superconductor proximity effects recently found in superconductor-ferromagnetic (S-F) systems are generally attributed to the formation of triplet-pairing correlations due to various forms of magnetic inhomogeneities at the S-F interface. In order to investigate this conjecture within a single F layer coupled to a superconductor, we performed scanning tunneling spectroscopy on bilayers of La<sub>2/3</sub>Ca<sub>1/3</sub>MnO<sub>3</sub> (LCMO) ferromagnetic thin films grown on high-temperature superconducting films of YBa<sub>2</sub>Cu<sub>3</sub>O<sub>7−δ</sub> or Pr<sub>1.85</sub>Ce<sub>0.15</sub>CuO<sub>4</sub> under various magnetic fields. We find a strong correlation between the magnitude of superconductor-related spectral features measured on the LCMO layer and the degree of magnetic inhomogeneity controlled by the external magnetic field. This corroborates theoretical predictions regarding the role played by magnetic inhomogeneities in inducing triplet pairing at S-F interfaces. Magnetic field dependence of the proximity-induced triplet superconductivity at ferromagnet/superconductor interfaces 2019-10-08T13:01:05Z

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