Towards fault-tolerant stabilization of a GKP qubit using a Kerr-cat ancilla
ORAL
Abstract
Work supported by: ARO, AFOSR, NSF, DOE and YINQE.
[1] Campagne-Ibarcq, Eickbusch, Touzard, et al., Nature 584, 368-372 (2020)
[2] V.V. Sivak et al., Nature 616, 50-55 (2023).
[3] Puri et al., Phys. Rev. X 9, 041009 (2019)
* Work supported by: ARO, AFOSR, NSF, DOE and YINQE.
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Publication: [1] Campagne-Ibarcq, Eickbusch, Touzard, et al., Nature 584, 368-372 (2020)
[2] V.V. Sivak et al., Nature 616, 50-55 (2023).
[3] Puri et al., Phys. Rev. X 9, 041009 (2019)
Presenters
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Andy Z Ding
Yale University
Authors
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Andy Z Ding
Yale University
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Benjamin L Brock
Yale University
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Alec W Eickbusch
Yale University
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Nicholas E Frattini
JILA and NIST
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Rodrigo G Cortinas
Yale University
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Volodymyr Sivak
Google Quantum AI, Yale University
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Vidul R Joshi
Yale University
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Stijn J de Graaf
Yale University
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Benjamin J Chapman
Yale University
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Suhas S Ganjam
Yale University
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Shraddha Singh
Yale University
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Luigi Frunzio
Yale University, Yale University / Quantum Circuits, Inc.
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Shruti Puri
Yale University
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Steven M Girvin
Yale University
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Robert J Schoelkopf
Yale University, Yale University/ QCI, Quantum Circuits, Inc., Yale University / Quantum Circuits, Inc.
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Michel H Devoret
Yale University