Continuous-variable systems protected by bosonic quantum codes have emerged as a promising platform for quantum information. To date, the design of code words has centered on optimizing the state occupation in the relevant basis to generate the distance needed for error correction. Here, we show tuning the phase degree of freedom in the design of code words can affect, and potentially enhance, the protection against Markovian errors that involve excitation exchange with the environment. As illustrations, we first consider phase engineering bosonic codes with uniform spacing in the Fock basis that correct excitation loss with a Kerr unitary and show that these modified codes feature destructive interference between error code words and, with...
Quantum error correction is expected to be essential in large-scale quantum technologies. However, t...
Bosonic quantum codes redundantly encode quantum information in the states of a quantum harmonic osc...
Bosonic quantum error-correcting codes offer a viable direction towards reducing the hardware over-h...
We construct a new class of quantum error-correcting codes for a bosonic mode, which are advantageou...
We show how macroscopically distinct quantum superposition states (Schrodinger cat states) may be us...
The early Gottesman, Kitaev, and Preskill (GKP) proposal for encoding a qubit in an oscillator has r...
Traditional quantum error correction involves the redundant encoding of k quantum bits using n quant...
We establish a symmetry-operator framework for designing quantum error-correcting (QEC) codes based ...
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...
Bosonic quantum error-correcting codes offer a viable direction towards reducing the hardware overhe...
Quantum error-correcting codes are constructed that embed a finite-dimensional code space in the inf...
Quantum error correction is crucial for scalable quantum information processing applications. Tradit...
We show how macroscopically distinct quantum superposition states (Schroedinger cat states) may be u...
Autonomous quantum error correction (AQEC) protects logical qubits by engineered dissipation and thu...
Quantum error correction is expected to be essential in large-scale quantum technologies. However, t...
Bosonic quantum codes redundantly encode quantum information in the states of a quantum harmonic osc...
Bosonic quantum error-correcting codes offer a viable direction towards reducing the hardware over-h...
We construct a new class of quantum error-correcting codes for a bosonic mode, which are advantageou...
We show how macroscopically distinct quantum superposition states (Schrodinger cat states) may be us...
The early Gottesman, Kitaev, and Preskill (GKP) proposal for encoding a qubit in an oscillator has r...
Traditional quantum error correction involves the redundant encoding of k quantum bits using n quant...
We establish a symmetry-operator framework for designing quantum error-correcting (QEC) codes based ...
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...
Bosonic quantum error-correcting codes offer a viable direction towards reducing the hardware overhe...
Quantum error-correcting codes are constructed that embed a finite-dimensional code space in the inf...
Quantum error correction is crucial for scalable quantum information processing applications. Tradit...
We show how macroscopically distinct quantum superposition states (Schroedinger cat states) may be u...
Autonomous quantum error correction (AQEC) protects logical qubits by engineered dissipation and thu...
Quantum error correction is expected to be essential in large-scale quantum technologies. However, t...
Bosonic quantum codes redundantly encode quantum information in the states of a quantum harmonic osc...
Bosonic quantum error-correcting codes offer a viable direction towards reducing the hardware over-h...