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http://dx.doi.org/10.9714/psac.2016.18.2.005

Superconducting critical temperature in FeN-based superconductor/ferromagnet bilayers  

Hwang, T.J. (Yeungnam University)
Kim, D.H. (Yeungnam University)
Publication Information
Progress in Superconductivity and Cryogenics / v.18, no.2, 2016 , pp. 5-7 More about this Journal
Abstract
We present an experimental investigation of the superconducting transition temperatures, $T_c$, of superconductor/ferromagnet bilayers with varying the thickness of ferromagnetic layer. FeN was used for the ferromagnetic (F) layer, and NbN and Nb were used for the superconducting (S) layer. The results were obtained using three different-thickness series of the S layer of the S/F bilayers: NbN/FeN with NbN thickness, $d_{NbN}{\approx}9.3nm$ and $d_{NbN}{\approx}10nm$, and Nb/FeN with Nb thickness $d_{Nb}{\approx}15nm$. $T_c$ drops sharply with increasing thickness of the ferromagnetic layer, $d_{FeN}$, before maximal suppression of superconductivity at $d_{FeN}{\approx}6.3nm$ for $d_{NbN}{\approx}10nm$ and at $d_{FeN}{\approx}2.5nm$ for $d_{Nb}{\approx}15nm$, respectively. After shallow minimum of $T_c$, a weak $T_c$ oscillation was observed in NbN/FeN bilayers, but it was hardly observable in Nb/FeN bilayers.
Keywords
Proximity effect; NbN/FeN bilayer; Nb/FeN bilayer;
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