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Quantum bits (qubits) are prone to several types of errors due to uncontrolled interactions with their environment.
Nonlinear Oscillations, Dynamical Systems, and Bifurcations of Vector Fields
John Guckenheimer and Philip Holmes · 1983
Earlier work this paper cites.
Quantum noise in the parametric oscillator: From squeezed states to coherent-state superpositions
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The dynamic generation of schrödinger cats and their detection
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Encoding a qubit in an oscillator
Daniel Gottesman, Alexei Kitaev, and John Preskill · 2001
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Wojciech Hubert Zurek · 2003
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Exploring the Quantum: Atoms, Cavities, and Photons
Serge Haroche and Jean-Michel Raimond · 2006
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Earlier work this paper cites.
Fault-tolerant quantum computation against biased noise
Panos Aliferis and John Preskill · 2008
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Quantum Computation and Quantum Information: 10th Anniversary Edition
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Nonlinear interferometry approach to photonic sequential logic
Hideo Mabuchi · 2011
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Surface codes: Towards practical large-scale quantum computation
Austin G. Fowler, Matteo Mariantoni, John M. Martinis, and Andrew N. Cleland · 2012
Earlier work this paper cites.
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Gerhard Kirchmair, Brian Vlastakis, Zaki Leghtas, Simon E. Nigg, Hanhee Paik, Eran Ginossar, Mazyar Mirrahimi, Luigi Frunzio, S. M. Girvin, and R. J. Schoelkopf · 2013
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Dynamically protected cat-qubits: A new paradigm for universal quantum computation
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Earlier work this paper cites.
Circuit QED: Superconducting qubits coupled to microwave photons
S. M. Girvin · 2014
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The Josephson mixer : a swiss army knife for microwave quantum optics
Emmanuel Flurin · 2014
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Cavity optomechanics
Markus Aspelmeyer, Tobias J Kippenberg, and Florian Marquardt · 2014
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Confined quantum zeno dynamics of a watched atomic arrow
Adrien Signoles, Adrien Facon, Dorian Grosso, Igor Dotsenko, Serge Haroche, Jean-Michel Raimond, Michel Brune, and Sébastien Gleyzes · 2014
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Experimental realization of quantum zeno dynamics
F. Schäfer, I. Herrera, S. Cherukattil, C. Lovecchio, F.S. Cataliotti, F. Caruso, and A. Smerzi · 2014
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Symmetries and conserved quantities in lindblad master equations
Victor V. Albert and Liang Jiang · 2014
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Reducing the overhead for quantum computation when noise is biased
Paul Webster, Stephen D. Bartlett, and David Poulin · 2015
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Confining the state of light to a quantum manifold by engineered two-photon loss
Z. Leghtas, S. Touzard, I. M. Pop, A. Kou, B. Vlastakis, A. Petrenko, K. M. Sliwa, A. Narla, S. Shankar, M. J. Hatridge, M. Reagor, L. Frunzio, R. J. Schoelkopf, M. Mirrahimi, and M. H. Devoret · 2015
Stabilization and operation of a kerr-cat qubit
A. Grimm, N. E. Frattini, S. Puri, S. O. Mundhada, S. Touzard, M. Mirrahimi, S. M. Girvin, S. Shankar, and M. H. Devoret · 2020
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Practical quantum error correction with the xzzx code and kerr-cat qubits
Andrew S. Darmawan, Benjamin J. Brown, Arne L. Grimsmo, David K. Tuckett, and Shruti Puri · 2021
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New material platform for superconducting transmon qubits with coherence times exceeding 0.3 milliseconds
Alexander P. M. Place, Lila V. H. Rodgers, Pranav Mundada, Basil M. Smitham, Mattias Fitzpatrick, Zhaoqi Leng, Anjali Premkumar, Jacob Bryon, Andrei Vrajitoarea, Sara Sussman, Guangming Cheng, Trisha Madhavan, Harshvardhan K. Babla, Xuan Hoang Le, Youqi Gang, Berthold Jäck, András Gyenis, Nan Yao, Robert J. Cava, Nathalie P. de Leon, and Andrew A. Houck · 2021
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Building a fault-tolerant quantum computer using concatenated cat codes
Christopher Chamberland, Kyungjoo Noh, Patricio Arrangoiz-Arriola, Earl T. Campbell, Connor T. Hann, Joseph Iverson, Harald Putterman, Thomas C. Bohdanowicz, Steven T. Flammia, Andrew Keller, Gil Refael, John Preskill, Liang Jiang, Amir H. Safavi-Naeini, Oskar Painter, and Fernando G.S.L. Brandão · 2022
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Quantum dynamics of an electromagnetic mode that cannot contain n photons
L. Bretheau, P. Campagne-Ibarcq, E. Flurin, F. Mallet, and B. Huard · 2015
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Holonomic quantum control with continuous variable systems
Victor V. Albert, Chi Shu, Stefan Krastanov, Chao Shen, Ren-Bao Liu, Zhen-Biao Yang, Robert J. Schoelkopf, Mazyar Mirrahimi, Michel H. Devoret, and Liang Jiang · 2016
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Ultrahigh error threshold for surface codes with biased noise
David K. Tuckett, Stephen D. Bartlett, and Steven T. Flammia · 2018
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Bistability in a mesoscopic josephson junction array resonator
P. R. Muppalla, O. Gargiulo, S. I. Mirzaei, B. Prasanna Venkatesh, M. L. Juan, L. Grünhaupt, I. M. Pop, and G. Kirchmair · 2018
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Coherent oscillations inside a quantum manifold stabilized by dissipation
S. Touzard, A. Grimm, Z. Leghtas, S. O. Mundhada, P. Reinhold, C. Axline, M. Reagor, K. Chou, J. Blumoff, K. M. Sliwa, S. Shankar, L. Frunzio, R. J. Schoelkopf, M. Mirrahimi, and M. H. Devoret · 2018
Cited alongside, same era.
Repetition cat qubits for fault-tolerant quantum computation
Jérémie Guillaud and Mazyar Mirrahimi · 2019
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Nicholas E. Frattini, Rodrigo G. Cortiñas, Jayameenakshi Venkatraman, Xu Xiao, Qile Su, Chan U Lei, Benjamin J. Chapman, Vidul R. Joshi, S. M. Girvin, Robert J. Schoelkopf, Shruti Puri, and Michel H. Devoret · 2022
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Combined dissipative and hamiltonian confinement of cat qubits
Ronan Gautier, Alain Sarlette, and Mazyar Mirrahimi · 2022
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Quantum bath engineering of a high impedance microwave mode through quasiparticle tunneling
Gianluca Aiello, Mathieu Féchant, Alexis Morvan, Julien Basset, Marco Aprili, Julien Gabelli, and Jérôme Estève · 2022
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Fast universal control of an oscillator with weak dispersive coupling to a qubit
Alec Eickbusch, Volodymyr Sivak, Andy Z. Ding, Salvatore S. Elder, Shantanu R. Jha, Jayameenakshi Venkatraman, Baptiste Royer, S. M. Girvin, Robert J. Schoelkopf, and Michel H. Devoret · 2022
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Towards practical quantum computers: transmon qubit with a lifetime approaching 0.5 milliseconds
Chenlu Wang, Xuegang Li, Huikai Xu, Zhiyuan Li, Junhua Wang, Zhen Yang, Zhenyu Mi, Xuehui Liang, Tang Su, Chuhong Yang, Guangyue Wang, Wenyan Wang, Yongchao Li, Mo Chen, Chengyao Li, Kehuan Linghu, Jiaxiu Han, Yingshan Zhang, Yulong Feng, Yu Song, Teng Ma, Jingning Zhang, Ruixia Wang, Peng Zhao, Weiyang Liu, Guangming Xue, Yirong Jin, and Haifeng Yu · 2022
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Suppressing quantum errors by scaling a surface code logical qubit
Google · 2023
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One hundred second bit-flip time in a two-photon dissipative oscillator
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Designing high-fidelity gates for dissipative cat qubits, 2023
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Cat qubit with 0.3 s bit-flip time owing to passive two photon dissipation, 2023
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Mechanically induced correlated errors on superconducting qubits with relaxation times exceeding 0.4 milliseconds, 2023
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Ldpc-cat codes for low-overhead quantum computing in 2d, 2024
Diego Ruiz, Jérémie Guillaud, Anthony Leverrier, Mazyar Mirrahimi, and Christophe Vuillot · 2024
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