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First-order phase transitions in ferromagnetic/superconducting/ferromagnetic trilayers

S. Tollis

DOI 10.1103/PhysRevB.69.104532 · Physical Review B

T1

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Abstract

We study theoretically the proximity effect in ferromagnetic/superconducting/ferromagnetic trilayers at the nanoscopic scale in the dirty limit. We show using the Usadel equation scheme that the order of the normal-metal-superconductor phase transition in the superconducting layer strongly depends on the thickness df of ferromagnetic (F) layers and on their relative orientation as well as on the interfaces transparency. In the parallel configuration for thin F layers and at high transparencies, the phase transition may become a first-order one. In the antiparallel case the transition always remains of second order. We calculate the order parameter Δ at T=0 as a function of F-layer thickness, analyze its behavior while decreasing transparency, and demonstrate that it can be either single valued or bivalued for an appropriate choice of parameters.

Source-reported materials — not catalogue approval

FormulaReported Tc (K)Pressure (GPa)Type
CuNi/Nb/CuNi

Archive — visibility unverified

Source-occurrence policy only; no material identity or catalogue acceptance is inferred from the formula.

—Pressure not reportedunknown
Gd/Nb

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Source-occurrence policy only; no material identity or catalogue acceptance is inferred from the formula.

—Pressure not reportedunknown
Fe/Nb/Fe

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Source-occurrence policy only; no material identity or catalogue acceptance is inferred from the formula.

—Pressure not reportedunknown

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