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M. Aghaee, Zulfi Alam, Mariusz Andrzejczuk, Andrey Antipov, Theodora Asimakidis, M. Astafev, Lukas Avilovas, Ahmad Azizimanesh, Amin Barzegar, Béla Bauer, Jonathan Becker, U. Bhaskar, Andrea G. Boa, S. Boddapati, Nichlaus Bohac, Jouri D. S. Bommer, Jan Borovsky, L. Bourdet, S. Boutin, Srivatsa Chakravarthi, Benjamin J. Chapman, Nikolaos Chatzaras, T. Chien, Jason Cho, P. Codd, William Cole, Paul W. Cooper, F. Corsetti, Ajuan Cui, Tareq El Dandachi, Konstantinos Divanis, Clayton Doyle, Andreas Ekefjard, Javier A. Falcon, S. Fallahi, L. Galletti, Geoff C. Gardner, H. Gavranovic, J. Gomes, D. Govender, F. Griggio, R. Grigoryan, S. Grijalva, S. Gronin, J. Gukelberger, Marzie Hamdast, Esben Bork Hansen, S. Heedt, Samantha Ho, L. Holgaard, K. V. Hoogdalem, Jinnapat Indrapiromkul, Henrik Ingerslev, Lovro Ivancevic, Max Jantos, Thomas Jensen, J. Jhoja, V. Joshi, Konstantin V. Kalashnikov, R. Kallaher, R. Kalra, Farhad Karimi, Torsten Karzig, M. E. Kloster, Christina Knapp, J.B. Knoblauch, J. Koski, A. Kringhøj, T. Laeven, Jeffrey Lai, G. D. Lange, T. Larsen, Kyunghoon Lee, Kongyi Li, Shuang Liang, T. Lindemann, Luna Lochmatter, Marijn Lucas, R. Lutchyn, Morten Hannibal Madsen, Nasiari Madulid, I. Maliyov, Yanick Mampaey, Michael J. Manfra, S. Markussen, E. Martinez, J. Mattinson, M'onica Meira, C. Mikolas, S. Mittal, Gopakumar Mohandas, Christian Mollgaard, M. W. A. Moor, C. Moore, George Moussa, B. Nabar, Anirudh Narla, A. Naseri, Chetan Nayak, B. S. Nielsen, Jens Nielsen, Mike Nystrom, E. O’Farrell, K. Ohtani, Theodore Rex Orth, Sarandrea Paolo, Camille Papon, L. Petit, D. Pikulin, M. Rajpalke, A. Ramirez, K. Rasmussen, D. Razmadze, Yuan Ren, Mariya Romanova, Loic Roure, I. Sadovskyy, L. Sainiemi, J. C. E. Saldaña, I. Sanlorenzo, Tatiane P. Santos, Carl Vincent C. Saruda, S. Schaal, John Schack, E. Schmidgall, Christina Sfetsou, C. Sfiligoj, Z. Shekason, S. Sinha, P. Sohr, M. J. Sousa, Kasper Spiegelhauer, T. Stankevič, H. Suominen, J. Suter, Attila Szénási, Sam Teicher, N. Thiyagarajah, R. Tholapi, M. Thomas, D. Tom, Emily A Toomey, J. Tracy, Michelle Turley, Matthew Turner, Ivica Urban, Aakash Valliappan, Dmitrii V. Viazmitinov, Anna Wulff Viazmitinova, Dominik Vogel, Wenbo Wang, C. Watson, John D. Watson, A. Webster, J. Weston, Timothy Williamson, G. Winkler, D. V. Woerkom, B. P. Wuetz, Cécile X. Yu, E. Yucelen, Jes'us Herranz Zamorano, R. Zeisel, Guoji Zheng, A. Zimmerman
3 2. 6. 2026.

20 Second Parity Lifetime in an InAs--Pb Tetron Device

A central promise of topological quantum computing is that increasing the excitation gap improves device performance significantly. Here, we experimentally validate this principle in an InAs--Pb tetron device via interferometric single-shot parity measurements. By replacing aluminum with the higher-gap superconductor lead in our superconductor-semiconductor hybrid devices, we have improved the robustness of our topological phase. In addition, to enable fast and precise bring-up at scale, we have developed an rf measurement technique that resolves low-energy wire-end states and directly measures their energy splitting with $\mu\text{eV}$ precision. We employ this technique to bring up a device in a multi-tetron array and perform parity measurements of one of the tetron's hybrid nanowires (NWs). By controllably switching the wire parity, we observe $h/2e$-periodic bimodal shifts in the quantum capacitance of a quantum dot coupled to the hybrid nanowire in an interference loop. Further time-resolved measurements reveal a characteristic parity switching time of $\sim 20$ s with some instances reaching minute-scale. Such extremely long parity lifetimes are orders of magnitude longer than typical qubit operation times, which are on the order of $\mu\text{s}$. Finally, we discuss potential implications for the fidelity of Pauli measurements.


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