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Superconducting Qubits

Resist-free shadow deposition using silicon trenches for Josephson junctions in superconducting qubits

arXiv
Authors: Tathagata Banerjee, Stephen Daniel Funni, Saswata Roy, Judy J. Cha, Valla Fatemi

Year

2026

Paper ID

48608

Status

Preprint

Abstract Read

~2 min

Abstract Words

135

Citations

0

Abstract

Superconducting qubit fabrication innovations continue to be explored to achieve higher performance. Despite improvements to base layer fabrication and processing, resist-based Josephson junction (JJ) schemes have largely remained unchanged. The polymer mask during deposition causes chemical contamination and limits in situ and ex situ surface preparation, junction materials, and scalability. Here, we demonstrate a resist-free approach to junction fabrication based on etched silicon trenches that is CMOS compatible and easily integrated into existing innovations in qubit base layer fabrication and chemical processing. We fabricate Al-AlOx-Al JJs and qubits using this method, measuring median energy relaxation times up to 184 microseconds. We find minimal contamination at the substrate-metal interface and fluctuations of energy relaxation on a 35 hour timescale that are narrow and normally distributed. The method widens the process window for substrate preparation and new materials platforms.

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  • This paper contributes to the Superconducting Qubits research area in the Quantum Articles archive.
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  • Superconducting qubit fabrication innovations continue to be explored to achieve higher performance.

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Current Paper #48608 #69031 Amplitude-dependent quantum hyd... #69022 Contacting Josephson Junctions ... #69011 Improved Cryogenic Photodiode O... #68999 Suppression of Quasiparticle Po...

External citation index: OpenAlex citation signal • updated 2026-06-14 22:56:10

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