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The parity modulation of the ground state of a superconducting island is a direct consequence of the presence of the Cooper pair condensate preferring an even number of charge carriers. The addition energy of an odd, unpaired quasiparticle…

Superconductivity · Physics 2016-09-02 David J. van Woerkom , Attila Geresdi , Leo P. Kouwenhoven

We theoretically propose a one-dimensional electronic nanodevice inspired in recently fabricated semiconductor-superconductor-ferromagnetic insulator (SE-SC-FMI) hybrid heterostructures, and investigate its zero-temperature transport…

Mesoscale and Nanoscale Physics · Physics 2025-11-19 Javier Feijóo , Aníbal Iucci , Alejandro M. Lobos

Superconducting qubits are compelling platforms for charge-parity detection and, due to their theoretical sensitivity on the meV energy scale, hold promise for rare event searches. In this work, we realize high-fidelity mapping of…

Artificial Kitaev chains have emerged as a promising platform for realizing topological quantum computing. Once the chains are formed and the Majorana zero modes are braided/fused, reading out the parity of the chains is essential for…

We have spectroscopically measured the energy level separation of a superconducting charge qubit coupled non-resonantly to a single mode of the electromagnetic field of a superconducting on-chip resonator. The strong coupling leads to large…

Mesoscale and Nanoscale Physics · Physics 2007-05-23 D. I. Schuster , A. Wallraff , A. Blais , L. Frunzio , R. -S. Huang , J. Majer , S. M. Girvin , R. J. Schoelkopf

A viable qubit must have a long coherence time $T_2$. In molecular nanomagnets $T_2$ is often limited at low temperatures by the presence of dipole and hyperfine interactions, which are often mitigated through sample dilution, chemical…

We present a hardware realization and measurements of a tetron qubit device in a superconductor-semiconductor heterostructure. The device architecture contains two parallel superconducting nanowires, which support four Majorana zero modes…

Mesoscale and Nanoscale Physics · Physics 2025-09-05 Morteza Aghaee , Zulfi Alam , Rikke Andersen , Mariusz Andrzejczuk , Andrey Antipov , Mikhail Astafev , Lukas Avilovas , Ahmad Azizimanesh , Eric Banek , Bela Bauer , Jonathan Becker , Umesh Kumar Bhaskar , Andrea G. Boa , Srini Boddapati , Nichlaus Bohac , Jouri D. S. Bommer , Jan Borovsky , Léo Bourdet , Samuel Boutin , Lucas Casparis , Srivatsa Chakravarthi , Hamidreza Chalabi , Benjamin J. Chapman , Nikolaos Chatzaras , Tzu-Chiao Chien , Jason Cho , Patrick Codd , William Cole , Paul W. Cooper , Fabiano Corsetti , Ajuan Cui , Tareq El Dandachi , Celine Dinesen , Andreas Ekefjärd , Saeed Fallahi , Luca Galletti , Geoffrey C. Gardner , Gonzalo Leon Gonzalez , Deshan Govender , Flavio Griggio , Ruben Grigoryan , Sebastian Grijalva , Sergei Gronin , Jan Gukelberger , Marzie Hamdast , A. Ben Hamida , Esben Bork Hansen , Caroline Tynell Hansen , Sebastian Heedt , Samantha Ho , Laurens Holgaard , Kevin van Hoogdalem , John Hornibrook , Henrik Ingerslev , Lovro Ivancevic , Sherwan Jamo , Max Jantos , Thomas Jensen , Jaspreet Singh Jhoja , Jeffrey C Jones , Vidul Joshi , Konstantin V. Kalashnikov , Ray Kallaher , Rachpon Kalra , Farhad Karimi , Torsten Karzig , Seth Kimes , Evelyn King , Maren Elisabeth Kloster , Christina Knapp , Jonne V. Koski , Pasi Kostamo , Tom Laeven , Jeffrey Lai , Gijs de Lange , Thorvald W. Larsen , Kyunghoon Lee , Kongyi Li , Guangze Li , Shuang Liang , Tyler Lindemann , Matthew Looij , Marijn Lucas , Roman Lutchyn , Morten Hannibal Madsen , Nasiari Madulid , Michael J. Manfra , Laveena Manjunath , Signe Markussen , Esteban Martinez , Marco Mattila , J. R. Mattinson , R. P. G. McNeil , Alba Pérez Millan , Ryan V. Mishmash , Sarang Mittal , Christian Møllgaard , M. W. A. de Moor , Eduardo Puchol Morejon , Trevor Morgan , George Moussa , B. P. Nabar , Anirudh Narla , Chetan Nayak , Jens Hedegaard Nielsen , William Hvidtfelt Padkær Nielsen , Frédéric Nolet , Michael J. Nystrom , Eoin O'Farrell , Thomas A. Ohki , Keita Otani , Camille Papon , Karl D Petersson , Luca Petit , Dima Pikulin , Mohana Rajpalke , Alejandro Alcaraz Ramirez , David Razmadze , Yuan Ren , Ivan Sadovskyy , Lauri Sainiemi , Juan Carlos Estrada Saldaña , Irene Sanlorenzo , Tatiane Pereira dos Santos , Simon Schaal , John Schack , Emma R. Schmidgall , Christina Sfetsou , Cristina Sfiligoj , Sarat Sinha , Patrick Sohr , Thomas L. Sørensen , Kasper Spiegelhauer , Tomaš Stankević , Lieuwe J. Stek , Patrick Strøm-Hansen , Henri J. Suominen , Judith Suter , Samuel M. L. Teicher , Raj Tholapi , Mason Thomas , D. W. Tom , Emily Toomey , Joshua Tracy , Michelle Turley , Matthew D. Turner , Shivendra Upadhyay , Ivan Urban , Dmitrii V. Viazmitinov , Anna Wulff Viazmitinova , Beatriz Viegas , Dominik J. Vogel , John Watson , Alex Webster , Joseph Weston , Timothy Williamson , Georg W. Winkler , David J. van Woerkom , Brian Paquelet Wuetz , Chung-Kai Yang , Shang-Jyun , Yu , Emrah Yucelen , Jesús Herranz Zamorano , Roland Zeisel , Guoji Zheng , A. M. Zimmerman

We realize a hybrid superconductor-semiconductor transmon device in which the Josephson effect is controlled by a gate-defined quantum dot in an InAs/Al nanowire. Microwave spectroscopy of the transmon's transition spectrum allows us to…

We propose a scheme to measure the parity of two distant qubits, while ensuring that losses on the quantum channel between them does not destroy coherences within the parity subspaces. This capability enables deterministic preparation of…

Quantum Physics · Physics 2017-04-05 Alain Sarlette , Mazyar Mirrahimi

Parity measurement is a central tool to many quantum information processing tasks. In this Letter, we propose a method to directly measure two- and four-qubit parity with low overhead in hard- and software, while remaining robust to…

We report the dispersive readout of the spin state of a double quantum dot formed at the corner states of a silicon nanowire field-effect transistor. Two face-to-face top-gate electrodes allow us to independently tune the charge occupation…

Mesoscale and Nanoscale Physics · Physics 2023-07-19 A. C. Betz , R. Wacquez , M. Vinet , X. Jehl , A L. Saraiva , M. Sanquer , A. J. Ferguson , M. F. Gonzalez-Zalba

Single-charge tunneling is a decoherence mechanism affecting superconducting qubits, yet the origin of excess quasiparticle excitations (QPs) responsible for this tunneling in superconducting devices is not fully understood. We measure the…

The transmon superconducting qubit is being intensely investigated as a promising approach for the physical implementation of quantum information processing, and high quality factors of order $10^6$ have been achieved both in two- and…

Mesoscale and Nanoscale Physics · Physics 2014-04-02 G. Catelani

Leveraging the higher harmonics content of the Josephson potential in a superconducting circuit offers a promising route in the search for new qubits with increased protection against decoherence. In this work, we demonstrate how the flux…

Mesoscale and Nanoscale Physics · Physics 2025-06-24 G. Giavaras , Ruben Seoane Souto , Maria Jose Calderon , Ramon Aguado

We study quantum coherence in a semiconductor charge qubit formed from a GaAs double quantum dot containing a single electron. Voltage pulses are applied to depletion gates to drive qubit rotations and non-invasive state readout is achieved…

Mesoscale and Nanoscale Physics · Physics 2013-05-29 K. D. Petersson , J. R. Petta , H. Lu , A. C. Gossard

We describe a method by which the decoherence time of a solid state qubit may be measured. The qubit is coded in the orbital degree of freedom of a single electron bound to a pair of donor impurities in a semiconductor host. The qubit is…

Mesoscale and Nanoscale Physics · Physics 2009-11-10 S. D. Barrett , G. J. Milburn

We present a superconducting device showing a clear parity effect in the number of electrons, even when there is, on average, a single nonequilibrium quasiparticle present and the parity of the island switches due to quasiparticles…

Mesoscale and Nanoscale Physics · Physics 2019-07-17 E. T. Mannila , V. F. Maisi , H. Q. Nguyen , C. M. Marcus , J. P. Pekola

We demonstrate conditional entanglement swapping, i.e. teleportation of entanglement, between time-bin qubits at the telecommunication wavelength of 1536.4 nm with high fidelity of 87\%. Our system is deployable, utilizing modular,…

Semiconductor spin qubits are a promising platform for quantum computing but remain vulnerable to charge noise. Accurate, in situ measurement of charge noise could enable closed-loop control and improve qubit performance. Here, we propose a…

Mesoscale and Nanoscale Physics · Physics 2025-07-23 David W. Kanaar , Yasuo Oda , Mark F. Gyure , J. P. Kestner

We present a concept for performing direct parity measurements on three or more qubits in microwave structures with superconducting resonators coupled to Josephson-junction qubits. We write the quantum-eraser conditions that must be…

Quantum Physics · Physics 2015-06-05 David P. DiVincenzo , Firat Solgun