Passive error correction with a qubit-oscillator system in noisy environment Passive error correction with a qubit-oscillator

In this paper, we study an open quantum system consisting of a qubit coupled to a harmonic oscillator subject to two-photon relaxation and demonstrate that such a system can be utilized to construct a cat qubit capable of passive error correction. To this end, we first show that the steady state of...

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Published inJournal of the Korean Physical Society Vol. 85; no. 11; pp. 890 - 897
Main Authors Zhu, Yanzhang, Hwang, Myung-Joong
Format Journal Article
LanguageEnglish
Published Seoul The Korean Physical Society 01.12.2024
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ISSN0374-4884
1976-8524
DOI10.1007/s40042-024-01216-2

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Abstract In this paper, we study an open quantum system consisting of a qubit coupled to a harmonic oscillator subject to two-photon relaxation and demonstrate that such a system can be utilized to construct a cat qubit capable of passive error correction. To this end, we first show that the steady state of the qubit-oscillator system, described by the open quantum Rabi model with two-photon relaxation, undergoes a super-radiant phase transition that breaks the strong symmetry of the Lindblad master equation. In the strong symmetry-broken phase, we show that a cat qubit can be stabilized in the steady state by tuning the qubit-oscillator coupling strength and demonstrate that passive error correction can be realized against errors due to fluctuations in the system frequencies. Our study deepens the understanding of dissipative phases in a qubit-oscillator system with strong symmetry and paves the way to utilize them for passive error correction.
AbstractList In this paper, we study an open quantum system consisting of a qubit coupled to a harmonic oscillator subject to two-photon relaxation and demonstrate that such a system can be utilized to construct a cat qubit capable of passive error correction. To this end, we first show that the steady state of the qubit-oscillator system, described by the open quantum Rabi model with two-photon relaxation, undergoes a super-radiant phase transition that breaks the strong symmetry of the Lindblad master equation. In the strong symmetry-broken phase, we show that a cat qubit can be stabilized in the steady state by tuning the qubit-oscillator coupling strength and demonstrate that passive error correction can be realized against errors due to fluctuations in the system frequencies. Our study deepens the understanding of dissipative phases in a qubit-oscillator system with strong symmetry and paves the way to utilize them for passive error correction.
Author Zhu, Yanzhang
Hwang, Myung-Joong
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Keywords Cat qubit
Open quantum system
Dissipative phase transition
Quantum error correction
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Snippet In this paper, we study an open quantum system consisting of a qubit coupled to a harmonic oscillator subject to two-photon relaxation and demonstrate that...
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SubjectTerms Mathematical and Computational Physics
Molecules and Optics
Original Paper - Atoms
Particle and Nuclear Physics
Physics
Physics and Astronomy
Theoretical
Subtitle Passive error correction with a qubit-oscillator
Title Passive error correction with a qubit-oscillator system in noisy environment
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