Bosonic quantum error-correcting codes offer a viable direction towards reducing the hardware overhead required for fault-tolerant quantum information processing. A broad class of bosonic codes, namely rotation-symmetric codes, can be characterized by their phase-space rotation symmetry. However, their performance has been examined to date only within an idealistic noise model. Here, we further analyze the error-correction capabilities of rotation-symmetric codes using a teleportation-based error-correction circuit. To this end, we numerically compute the average gate fidelity, including measurement errors into the noise model of the data qubit. Focusing on physical measurement models, we assess the performance of heterodyne and adaptive ho...
The early Gottesman, Kitaev, and Preskill (GKP) proposal for encoding a qubit in an oscillator has r...
Quantum computers hold the promise of solving computational problems which are intractable using con...
The development of quantum computers requires not only experimental advances, but also theoretical e...
Bosonic quantum error-correcting codes offer a viable direction towards reducing the hardware over-h...
Bosonic rotation codes, introduced here, are a broad class of bosonic error-correcting codes based o...
Bosonic rotation codes, introduced here, are a broad class of bosonic error-correcting codes based o...
Quantum information is vulnerable to environmental noise and experimental imperfections, hindering t...
We establish a symmetry-operator framework for designing quantum error-correcting (QEC) codes based ...
Symmetric states of collective angular momentum are good candidates for multi-qubit probe states in ...
We construct a new class of quantum error-correcting codes for a bosonic mode, which are advantageou...
The early Gottesman, Kitaev, and Preskill (GKP) proposal for encoding a qubit in an oscillator has r...
Encoding quantum information into a set of harmonic oscillators is considered a hardware efficient a...
Quantum error correction is crucial for scalable quantum information processing applications. Tradit...
International audienceStraightforward logical operations contrasting with complex state preparation ...
The early Gottesman, Kitaev, and Preskill (GKP) proposal for encoding a qubit in an oscillator has r...
The early Gottesman, Kitaev, and Preskill (GKP) proposal for encoding a qubit in an oscillator has r...
Quantum computers hold the promise of solving computational problems which are intractable using con...
The development of quantum computers requires not only experimental advances, but also theoretical e...
Bosonic quantum error-correcting codes offer a viable direction towards reducing the hardware over-h...
Bosonic rotation codes, introduced here, are a broad class of bosonic error-correcting codes based o...
Bosonic rotation codes, introduced here, are a broad class of bosonic error-correcting codes based o...
Quantum information is vulnerable to environmental noise and experimental imperfections, hindering t...
We establish a symmetry-operator framework for designing quantum error-correcting (QEC) codes based ...
Symmetric states of collective angular momentum are good candidates for multi-qubit probe states in ...
We construct a new class of quantum error-correcting codes for a bosonic mode, which are advantageou...
The early Gottesman, Kitaev, and Preskill (GKP) proposal for encoding a qubit in an oscillator has r...
Encoding quantum information into a set of harmonic oscillators is considered a hardware efficient a...
Quantum error correction is crucial for scalable quantum information processing applications. Tradit...
International audienceStraightforward logical operations contrasting with complex state preparation ...
The early Gottesman, Kitaev, and Preskill (GKP) proposal for encoding a qubit in an oscillator has r...
The early Gottesman, Kitaev, and Preskill (GKP) proposal for encoding a qubit in an oscillator has r...
Quantum computers hold the promise of solving computational problems which are intractable using con...
The development of quantum computers requires not only experimental advances, but also theoretical e...