4.6 Article

Enhancement of supercurrent through ferromagnetic materials by interface engineering

Journal

PHYSICAL REVIEW B
Volume 106, Issue 1, Pages -

Publisher

AMER PHYSICAL SOC
DOI: 10.1103/PhysRevB.106.014519

Keywords

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Funding

  1. Northrop Grumman Corporation

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In this study, we investigated the magnetic behavior and supercurrent transmission properties of Ni/NiFe/Ni trilayers in Josephson junctions. The trilayers showed good magnetic switching properties and a fourfold increase in the maximum supercurrent compared to pure NiFe junctions.
Josephson junctions containing ferromagnetic materials exhibit interesting physics and show promise as circuit elements for superconducting logic and memory. For memory applications, the properties of the junction should be controllable by changing the magnetic configuration inside the junction. To achieve good magnetic switching properties, one should choose a soft magnetic material such as NiFe (permalloy); however, NiFe exhibits poor supercurrent transmission in Josephson junctions. In this paper, we put thin layers of Ni on either side of the NiFe and characterize the magnetic behavior and supercurrent transmission properties of the Ni/NiFe/Ni trilayers as a function of Ni and NiFe thicknesses. Using a Ni thickness of 0.4 nm, we find that the magnetic switching behavior of the trilayers is not severely degraded relative to plain NiFe, while the maximum supercurrent in the ?? state of the trilayer Josephson junctions is increased by a factor of four relative to that of NiFe junctions. We speculate that the supercurrent enhancement is due to the different spin-dependent transport properties of the Cu/Ni and Cu/NiFe interfaces.

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