Superconducting Qubits
205 papers for year 2022
Superconducting Qubits Research Context
This Quantum Articles category organizes published quantum research papers so readers can browse focused work by topic, source, and year.
Showing 109-120 of 205
Numerical analysis of a three-wave-mixing Josephson traveling-wave parametric amplifier with engineered dispersion loadings
Victor Gaydamachenko, Christoph Kissling, Ralf Dolata, Alexander B. Zorin
Observation of many-body Fock space dynamics in two dimensions
Yunyan Yao, Liang Xiang, Zexian Guo, Zehang Bao, Yong-Feng Yang, Zixuan Song, Haohai Shi, Xuhao Zhu, Feitong Jin, Jiachen Chen, Shibo Xu, Zitian Zhu, Fanhao Shen, Ning Wang, Chuanyu Zhang, Yaozu Wu, Yiren Zou, Pengfei Zhang, Hekang Li, Zhen Wang, Chao Song, Chen Cheng, Rubem Mondaini, H. Wang, J. Q. You, Shi-Yao Zhu, Lei Ying, Qiujiang Guo
Observation of partial and infinite-temperature thermalization induced by repeated measurements on a quantum hardware
Alessandro Santini, Andrea Solfanelli, Stefano Gherardini, Guido Giachetti
On the static effective Lindbladian of the squeezed Kerr oscillator
Jayameenakshi Venkatraman, Xu Xiao, Rodrigo G. Cortiñas, Michel H. Devoret
Optical tomography dynamics induced by qubit-resonator interaction under intrinsic decoherence.
Mohamed A-A, Eleuch H.
Optically heralded microwave photons
Wentao Jiang, Felix M. Mayor, Sultan Malik, Raphaël Van Laer, Timothy P. McKenna, Rishi N. Patel, Jeremy D. Witmer, Amir H. Safavi-Naeini
Optimizing for periodicity: a model-independent approach to flux crosstalk calibration for superconducting circuits
X. Dai, R. Trappen, R. Yang, S. M. Disseler, J. I. Basham, J. Gibson, A. J. Melville, B. M. Niedzielski, R. Das, D. K. Kim, J. L. Yoder, S. J. Weber, C. F. Hirjibehedin, D. A. Lidar, A. Lupascu
Optimizing resource efficiencies for scalable full-stack quantum computers
Marco Fellous-Asiani, Jing Hao Chai, Yvain Thonnart, Hui Khoon Ng, Robert S. Whitney, Alexia Auffèves
Overcoming I/O bottleneck in superconducting quantum computing: multiplexed qubit control with ultra-low-power, base-temperature cryo-CMOS multiplexer
Acharya R, Brebels S, Grill A, Verjauw J, Ivanov T, Lozano D, Wan D, Damme JV, Vadiraj A, Mongillo M, Govoreanu B, Craninckx J, Radu IP, de Greve K, Gielen G, Catthoor F, Potocnik A.
Overcoming I/O bottleneck in superconducting quantum computing: multiplexed qubit control with ultra-low-power, base-temperature cryo-CMOS multiplexer
Rohith Acharya, Steven Brebels, Alexander Grill, Jeroen Verjauw, Tsvetan Ivanov, Daniel Perez Lozano, Danny Wan, Jacques van Damme, A. M. Vadiraj, Massimo Mongillo, Bogdan Govoreanu, Jan Craninckx, I. P. Radu, Kristiaan de Greve, Georges Gielen, Francky Catthoor, Anton Potočnik
Parallel window decoding enables scalable fault tolerant quantum computation
Luka Skoric, Dan E. Browne, Kenton M. Barnes, Neil I. Gillespie, Earl T. Campbell
Parametric longitudinal coupling between a high-impedance superconducting resonator and a semiconductor quantum dot singlet-triplet spin qubit.
Bøttcher CGL, Harvey SP, Fallahi S, Gardner GC, Manfra MJ, Vool U, Bartlett SD, Yacoby A.