English

Interface driven reentrant superconductivity in HoNi$_5$-NbN-HoNi$_5$ nanostructures

Superconductivity 2015-06-15 v1

Abstract

Superconductivity (S) and ferromagnetism (F) are probed through transport and magnetization measurements in nanometer scale HoNi5_5-NbN (F-S) bilayers and HoNi5_5-NbN-HoNi5_5 (F-S-F) trilayers. The choice of materials has been made on the basis of their comparable ordering temperatures and strong magnetic anisotropy in HoNi5_5. We observe the normal state reentrant behavior in resistance vs. temperature plots of the F-S-F structures just below the superconducting transition in the limited range of HoNi5_5 layer thickness dHN_{HN} (20 nm << dHN_{HN} << 80 nm) when dNbN_{NbN} is fixed at \simeq 10 nm. The reentrance is quenched by increasing the out-of-plane (H_{\perp}) magnetic field and transport current where as in-plane (H_{\parallel}) field of \leq 1500 Oe has no effect on the reentrance. The thermally activated flux flow characteristics of the S, F-S and F-S-F layers reveal a transition from collective pinning to single vortex pinning as we place F layers on both sides of the S film. The origin of the reentrant behavior seen here in the range of 0.74 \leq TCurie_{Curie}/TC_C \leq 0.92 is attribute to a delicate balance between the magnetic exchange energy and the condensation energy in the interfacial regions of the trilayer.

Keywords

Cite

@article{arxiv.1303.3967,
  title  = {Interface driven reentrant superconductivity in HoNi$_5$-NbN-HoNi$_5$ nanostructures},
  author = {Gyanendra Singh and P. C. Joshi and Z. Hossain and R. C. Budhani},
  journal= {arXiv preprint arXiv:1303.3967},
  year   = {2015}
}

Comments

13 pages and 5 figures

R2 v1 2026-06-21T23:43:07.327Z