Superconductor Electronics Fabrication Process with MoN$_x$ Kinetic Inductors and Self-Shunted Josephson Junctions
Abstract
Recent progress in superconductor electronics fabrication has enabled single-flux-quantum (SFQ) digital circuits with close to one million Josephson junctions (JJs) on 1-cm chips. Increasing the integration scale further is challenging because of the large area of SFQ logic cells, mainly determined by the area of resistively shunted Nb/AlO-Al/Nb JJs and geometrical inductors utilizing multiple layers of Nb. To overcome these challenges, we are developing a fabrication process with self-shunted high-J JJs and compact thin-film MoN kinetic inductors instead of geometrical inductors. We present fabrication details and properties of MoN films with a wide range of T, including residual stress, electrical resistivity, critical current, and magnetic field penetration depth {\lambda}. As kinetic inductors, we implemented MoN films with T about 8 K, {\lambda} about 0.51 {\mu}m, and inductance adjustable in the range from 2 to 8 pH/sq. We also present data on fabrication and electrical characterization of Nb-based self-shunted JJs with AlO tunnel barriers and J = 0.6 mA/{\mu}m, and with 10-nm thick SiNb barriers, with x from 0.03 to 0.15, fabricated on 200-mm wafers by co-sputtering. We demonstrate that the electron transport mechanism in SiNb barriers at x < 0.08 is inelastic resonant tunneling via chains of multiple localized states. At larger x, their Josephson characteristics are strongly dependent on x and residual stress in Nb electrodes, and in general are inferior to AlO tunnel barriers.
Keywords
Cite
@article{arxiv.1801.02659,
title = {Superconductor Electronics Fabrication Process with MoN$_x$ Kinetic Inductors and Self-Shunted Josephson Junctions},
author = {Sergey K. Tolpygo and Vladimir Bolkhovsky and D. E. Oates and R. Rastogi and S. Zarr and A. L. Day and T. J. Weir and Alex Wynn and L. M. Johnson},
journal= {arXiv preprint arXiv:1801.02659},
year = {2018}
}
Comments
12 pages, 14 figures, 1 table, 51 references. Presented at the 13th European Conference on Applied Superconductivity, EUCAS 2017, 17-21 September 2017, Geneva, Switzerland