Superconducting Qubits
33 papers for year 2024 from Europe PMC
Showing 1-12 of 33
A Comparative Review of Quantum Bits: Superconducting, Topological, Spin, and Emerging Qubit Technologies
Chohan A.
A cryogenic on-chip microwave pulse generator for large-scale superconducting quantum computing.
Bao Z, Li Y, Wang Z, Wang J, Yang J, Xiong H, Song Y, Wu Y, Zhang H, Duan L.
A gate tunable transmon qubit in planar Ge.
Sagi O, Crippa A, Valentini M, Janik M, Baghumyan L, Fabris G, Kapoor L, Hassani F, Fink J, Calcaterra S, Chrastina D, Isella G, Katsaros G.
A mechanical qubit.
Yang Y, Kladarić I, Drimmer M, von Lüpke U, Lenterman D, Bus J, Marti S, Fadel M, Chu Y.
A quantum computing measurement and control system with an FPGA-based scheduling system.
Liu Y, Li Y.
Advanced CMOS manufacturing of superconducting qubits on 300 mm wafers.
Van Damme J, Massar S, Acharya R, Ivanov T, Perez Lozano D, Canvel Y, Demarets M, Vangoidsenhoven D, Hermans Y, Lai JG, Vadiraj AM, Mongillo M, Wan D, De Boeck J, Potočnik A, De Greve K.
An open-source data storage and visualization platform for collaborative qubit control.
Brahmbhatt D, Xu Y, Vora N, Chen L, Fruitwala N, Huang G, Ji Q, Nguyen P.
Beating the Ramsey limit on sensing with deterministic qubit control
Levenson-Falk E, Hecht M, Saurav K, Vlachos E, Lidar D.
Can quantum computers do nothing?
Nico-Katz A, Keenan N, Goold J.
Charging a quantum battery mediated by parity-deformed fields.
Mojaveri B, Jafarzadeh Bahrbeig R, Fasihi MA.
Coherent Driving of a Single Nitrogen Vacancy Center by a Resonant Magnetic Tunnel Junction.
Yan GQ, McLaughlin N, Yamamoto T, Li S, Nozaki T, Yuasa S, Du CR, Wang H.
Creating and controlling global Greenberger-Horne-Zeilinger entanglement on quantum processors.
Bao Z, Xu S, Song Z, Wang K, Xiang L, Zhu Z, Chen J, Jin F, Zhu X, Gao Y, Wu Y, Zhang C, Wang N, Zou Y, Tan Z, Zhang A, Cui Z, Shen F, Zhong J, Li T, Deng J, Zhang X, Dong H, Zhang P, Liu YR, Zhao L, Hao J, Li H, Wang Z, Song C, Guo Q, Huang B, Wang H.