English

Development of Self-Shunted Josephson Junctions For a Ten-Superconductor-Layer Fabrication Process: Nb/NbN$_x$/Nb Junctions

Superconductivity 2023-12-22 v1 Mesoscale and Nanoscale Physics Applied Physics

Abstract

To increase integration scale of superconductor electronics, we are developing a new, SFQ7ee, node of the fabrication process at MIT Lincoln Laboratory. In comparison to the existing SFQ5ee node, we increased the number of fully planarized superconducting layers to ten and utilized NbN and NbN/Nb kinetic inductors to increase the inductor number density above 100 million per cm2^2. Increasing the Josephson junction (JJ) number density to the same level requires implementing self-shunted high-JcJ_c JJs. We investigated properties of Nb/NbNx_x/Nb trilayer JJs as a potential replacement of high-JcJ_c Nb/Al-AlOx_x/Nb JJs, where NbNx_x is a disordered, nonsuperconducting nitride deposited by reactive sputtering. Dependences of the IcRnI_cR_n product and Josephson critical current density, JcJ_c on the NbNx_x barrier thickness and on temperature were studied in the thickness range from 5 nm to 20 nm. The fabricated JJs can be described by the microscopic theory of SNS junctions, assuming no suppression of the energy gap in Nb electrodes near the NbNx_x interfaces and a Cooper pair decay length in the NbNx_x barrier of about 2.3 nm. Current-voltage characteristics of the JJs are well described by the RCSJ model. In the studied range JcJ_c < 10 mA/μ\mum2m^2, the Nb/NbNx_x/Nb JJs have lower specific resistance RnAR_nA, lower IcRnI_cR_n product, and a stronger dependence of the IcRnI_cR_n on temperature than self-shunted or critically damped externally shunted Nb/Al-AlOx_x/Nb JJs with the same critical current density; here AA is the JJ area, RnR_n the JJ effective shunting resistance.

Keywords

Cite

@article{arxiv.2312.13475,
  title  = {Development of Self-Shunted Josephson Junctions For a Ten-Superconductor-Layer Fabrication Process: Nb/NbN$_x$/Nb Junctions},
  author = {Sergey K. Tolpygo and Ravi Rastogi and Terence Weir and Evan B. Golden and Vladimir Bolkhovsky},
  journal= {arXiv preprint arXiv:2312.13475},
  year   = {2023}
}

Comments

8 pages, 7 figures, 55 references. Presented at EUCAS 2023, September 3-7, 2023, Bologna, Italy