Published March 1985 | Version v1
Journal article

Tunneling, resistive and structural study of NbN and other superconducting nitrides

  • 1. ATandT Bell Laboratories, Murray Hill, New Jersey

Description

A straightforward method for producing metal nitrides, which we call Thin Film Diffusion (TFD), has been developed. With this technique we produced films of cubic nitrides (NbN, ZrN, VN, TiN) with superconducting transition temperatures up to 17.25K in NbN (equal to the highest known in this material), and up to 9.4K in VN (0.6K higher than the highest previously reported value). Resistive transitions are less than 0.1K in width, indicating, together with x-rays, that the samples are homogeneous and essentially single B1 phase. In NbN the relatively low resistivity /rho/(20K) = 65μΩcm and metallic resistance ratio /rho/(300K)//rho/(20K) = 1.2 were found. TFD films open up new possibilities in tunneling and other experiments on cubic nitrides. Our present results include determination of the strong coupling parameter 2Δ(0)/kT /SUB c/ = 4.31 and of the electron-phonon coupling function α2F(ω) in NbN. α2F(ω) is found to have a peak at about 13 meV, which explains the strong-coupling nature of NbN. In resistive studies we found an interesting similarity between the low temperature resistivity behavior of cubic nitrides and A-15 superconductors

Additional details

Publishing Information

Journal Title
IEEE Trans. Magn.
Journal Volume
MAG 21
Journal Issue
2
Series
IEEE Trans. Magn.
Journal Page Range
509-513
ISSN
0018-9464
CODEN
IEMGA

Conference

Title
Applied superconductivity conference.
Dates
9-13 Sep 1984.
Place
San Diego, CA (USA).

Optional Information

Secondary number(s)
CONF-840937--.