1. Interferometric single-shot parity measurement in InAs-Al hybrid devices.
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Aghaee M, Alcaraz Ramirez A, Alam Z, Ali R, Andrzejczuk M, Antipov A, Astafev M, Barzegar A, Bauer B, Becker J, Bhaskar UK, Bocharov A, Boddapati S, Bohn D, Bommer J, Bourdet L, Bousquet A, Boutin S, Casparis L, Chapman BJ, Chatoor S, Christensen AW, Chua C, Codd P, Cole W, Cooper P, Corsetti F, Cui A, Dalpasso P, Dehollain JP, de Lange G, de Moor M, Ekefjärd A, El Dandachi T, Estrada Saldaña JC, Fallahi S, Galletti L, Gardner G, Govender D, Griggio F, Grigoryan R, Grijalva S, Gronin S, Gukelberger J, Hamdast M, Hamze F, Hansen EB, Heedt S, Heidarnia Z, Herranz Zamorano J, Ho S, Holgaard L, Hornibrook J, Indrapiromkul J, Ingerslev H, Ivancevic L, Jensen T, Jhoja J, Jones J, Kalashnikov KV, Kallaher R, Kalra R, Karimi F, Karzig T, King E, Kloster ME, Knapp C, Kocon D, Koski JV, Kostamo P, Kumar M, Laeven T, Larsen T, Lee J, Lee K, Leum G, Li K, Lindemann T, Looij M, Love J, Lucas M, Lutchyn R, Madsen MH, Madulid N, Malmros A, Manfra M, Mantri D, Markussen SB, Martinez E, Mattila M, McNeil R, Mei AB, Mishmash RV, Mohandas G, Mollgaard C, Morgan T, Moussa G, Nayak C, Nielsen JH, Nielsen JM, Nielsen WHP, Nijholt B, Nystrom M, O'Farrell E, Ohki T, Otani K, Paquelet Wütz B, Pauka S, Petersson K, Petit L, Pikulin D, Prawiroatmodjo G, Preiss F, Puchol Morejon E, Rajpalke M, Ranta C, Rasmussen K, Razmadze D, Reentila O, Reilly DJ, Ren Y, Reneris K, Rouse R, Sadovskyy I, Sainiemi L, Sanlorenzo I, Schmidgall E, Sfiligoj C, Shah MB, Simoes K, Singh S, Sinha S, Soerensen T, Sohr P, Stankevic T, Stek L, Stuppard E, Suominen H, Suter J, Teicher S, Thiyagarajah N, Tholapi R, Thomas M, Toomey E, Tracy J, Turley M, Upadhyay S, Urban I, Van Hoogdalem K, Van Woerkom DJ, Viazmitinov DV, Vogel D, Watson J, Webster A, Weston J, Winkler GW, Xu D, Yang CK, Yucelen E, Zeisel R, Zheng G, and Zilke J
- Abstract
The fusion of non-Abelian anyons is a fundamental operation in measurement-only topological quantum computation
1 . In one-dimensional topological superconductors (1DTSs)2-4 , fusion amounts to a determination of the shared fermion parity of Majorana zero modes (MZMs). Here we introduce a device architecture5 that is compatible with future tests of fusion rules. We implement a single-shot interferometric measurement of fermion parity6-11 in indium arsenide-aluminium heterostructures with a gate-defined superconducting nanowire12-14 . The interferometer is formed by tunnel-coupling the proximitized nanowire to quantum dots. The nanowire causes a state-dependent shift of the quantum capacitance of these quantum dots of up to 1 fF. Our quantum-capacitance measurements show flux h/2e-periodic bimodality with a signal-to-noise ratio (SNR) of 1 in 3.6 μs at optimal flux values. From the time traces of the quantum-capacitance measurements, we extract a dwell time in the two associated states that is longer than 1 ms at in-plane magnetic fields of approximately 2 T. We discuss the interpretation of our measurements in terms of both topologically trivial and non-trivial origins. The large capacitance shift and long poisoning time enable a parity measurement with an assignment error probability of 1%., Competing Interests: Competing interests: The authors declare no competing interests., (© 2025. The Author(s).)- Published
- 2025
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