Towards a bias-preserving CNOT gate between stabilized cat qubits (Part 1)
ORAL
Abstract
In this work, we present our progress in realizing a bias-preserving CNOT gate between two stabilized cat qubits. This requires both improvement in the performance of the individual cat qubits along with a careful gate design. This work paves the way towards the demonstration of full quantum error correction based on repeated cat qubits.
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Presenters
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Antoine Essig
ALICE & BOB
Authors
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Antoine Essig
ALICE & BOB
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Nicolas Bourdaud
ALICE & BOB
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Joachim Cohen
Université de Sherbrooke, ALICE & BOB
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Nathanael P Cottet
ALICE & BOB, Alice and Bob, Yale University
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Louise Devanz
ALICE & BOB
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Pierre FEVRIER
Universite de Sherbrooke, ALICE & BOB
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Antoine Gras
Alice&Bob, ALICE & BOB
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Jérémie Guillaud
Alice & Bob, Alice&Bob, 53 Bd du Général Martial Valin 75015 Paris, France, ALICE & BOB
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Efe Gümüs
ALICE & BOB
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Mattis Hallén
ALICE & BOB
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Venus Hasanuzzaman Kamrul
ALICE & BOB
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Sebastion Jezouin
ALICE & BOB
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Raphael Lescanne
ALICE & BOB
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Paul Magnard
ALICE & BOB
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Julien Roul
ALICE & BOB
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Natalia Pankratova
Alice&Bob, ALICE & BOB
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Felix Rautschke
Alice&Bob, ALICE & BOB
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Theau Peronnin
ALICE & BOB, Ecole Normale Superieure de Lyon
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Erwan Roverc'h
Ecole Normale Supérieure, ALICE & BOB
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Jeremy Stevens
ALICE & BOB
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Stephane Polis
Alice&Bob, ALICE & BOB
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Jean-Loup Ville
ALICE & BOB
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Pierre Wan-Fat
ALICE & BOB
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Rémi Rousseau
ALICE & BOB