Substrate insulated Josephson junctions for superconducting quantum circuits

We have developed a fabrication technique for Josephson junctions that employs a three-dimensional patterned, low-loss substrate instead of commonly used organic resists. The technique enables the fabrication of high-quality trilayer junctions from a wide range of geometries and materials, including high-melting-point superconductors such as tantalum or niobium. The junction electrodes are free from intentionally introduced oxides and organic materials, which are known sources of decoherence. We fabricate and characterize underdamped Nb/AlOx/Nb junctions of different sizes in several geometries.

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Publication Details

Journal
KITopen
Published
2026-10-05
DOI
https://doi.org/10.5445/ir/1000197583
Primary Topic
Quantum Information and Cryptography
Type
article
Field-Weighted Citation Impact
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article

Substrate insulated Josephson junctions for superconducting quantum circuits

Jürgen Lisenfeld, J. N. Voss, J. Lenschen, U. Strobel et al.
KITopen
Quantum Information and Cryptography
article

Substrate insulated Josephson junctions for superconducting quantum circuits

Jürgen Lisenfeld, J. N. Voss, J. Lenschen, U. Strobel, D. Reuter, A. V. Ustinov, L. Kamps, L. Radtke, J. Luo-Hofmann, H. Rotzinger, J. N. Kämmerer
article en

Abstract

We have developed a fabrication technique for Josephson junctions that employs a three-dimensional patterned, low-loss substrate instead of commonly used organic resists. The technique enables the fabrication of high-quality trilayer junctions from a wide range of geometries and materials, including high-melting-point superconductors such as tantalum or niobium. The junction electrodes are free from intentionally introduced oxides and organic materials, which are known sources of decoherence. We fabricate and characterize underdamped Nb/AlOx/Nb junctions of different sizes in several geometries.

KITopen
Openalex Percentile: Top 10%
Quantum Information and Cryptography
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