4.4 Article

Proximity effect in [Nb(1.5 nm)/Fe(x)]10/Nb(50 nm) superconductor/ferromagnet heterostructures

期刊

BEILSTEIN JOURNAL OF NANOTECHNOLOGY
卷 11, 期 -, 页码 1254-1263

出版社

BEILSTEIN-INSTITUT
DOI: 10.3762/bjnano.11.109

关键词

ferromagnet; iron (Fe); mixed state; neutron reflectometry; niobium (Nb); proximity effects; superconductor

资金

  1. German Research Foundation (Deutsche Forschungsgemeinschaft, DFG) [107745057 - TRR80]
  2. SPINTECH project of the HORIZON-2020 TWINNING program (2018-2020)

向作者/读者索取更多资源

We have investigated the structural, magnetic and superconduction properties of [Nb(1.5 nm)/Fe(x)] 10 superlattices deposited on a thick Nb(50 nm) layer. Our investigation showed that the Nb(50 nm) layer grows epitaxially at 800 degrees C on the Al2O3(1-102) substrate. Samples grown at this condition possess a high residual resistivity ratio of 15-20. By using neutron reflectometry we show that Fe/Nb superlattices with x < 4 nm form a depth-modulated FeNb alloy with concentration of iron varying between 60% and 90%. This alloy has weak ferromagnetic properties. The proximity of this weak ferromagnetic layer to a thick superconductor leads to an intermediate phase that is characterized by a suppressed but still finite resistance of structure in a temperature interval of about 1 K below the superconducting transition of thick Nb. By increasing the thickness of the Fe layer to x = 4 nm the intermediate phase disappears. We attribute the intermediate state to proximity induced non-homogeneous superconductivity in the structure.

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