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- W4236222703 abstract "We have fabricated $mathrm{Nb}∕mathrm{Cu}∕mathrm{CoFe}$ trilayers, varying the thickness of the Cu or $mathrm{CoFe}$ layer in order to control the coupling between the superconductivity and the ferromagnetism. The ${T}_{c}$ behavior of the $mathrm{Nb}∕mathrm{Cu}$ bilayer exhibits the well-known proximity effect of an SN bilayer. In a $mathrm{Nb}∕mathrm{Cu}∕mathrm{CoFe}$ trilayer with the thicknesses of the Nb and $mathrm{CoFe}$ layers fixed, the ${T}_{c}$ values increase on two different scales of length as the thickness of the Cu layer increases: one with a length scale of about $2phantom{rule{0.3em}{0ex}}mathrm{nm}$ when the Cu layer is less than $5phantom{rule{0.3em}{0ex}}mathrm{nm}$ in thickness and the other with a length scale of about $68phantom{rule{0.3em}{0ex}}mathrm{nm}$, the normal coherence length of Cu, when the Cu layer is larger than $5phantom{rule{0.3em}{0ex}}mathrm{nm}$ in thickness. Furthermore, in a similar manner to the case of $mathrm{Nb}∕mathrm{CoFe}$, the ${T}_{c}$ behavior of a $mathrm{Nb}∕mathrm{Cu}∕mathrm{CoFe}$ trilayer as a function of $mathrm{CoFe}$ thickness shows a small dip structure. By employing Usadel formalism, we deduced all the relevant parameters that can explain our data in a consistent manner. In spite of the better interfaces in the $mathrm{Nb}∕mathrm{Cu}∕mathrm{CoFe}$ system, no ${T}_{c}$ oscillation as a function of the Cu thickness was observed, in contrast to the $mathrm{Nb}∕mathrm{Au}∕mathrm{CoFe}$ system. We will discuss the difference and similarity between the $mathrm{Nb}∕mathrm{Cu}∕mathrm{CoFe}$ and $mathrm{Nb}∕mathrm{Au}∕mathrm{CoFe}$ systems." @default.
- W4236222703 created "2022-05-12" @default.
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- W4236222703 date "2006-11-02" @default.
- W4236222703 modified "2023-09-23" @default.
- W4236222703 title "Proximity effect inNb∕Cu∕CoFetrilayers" @default.
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- W4236222703 doi "https://doi.org/10.1103/physrevb.74.174503" @default.
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