Dynamically protected cat-qubits: a new paradigm for universal quantum computation
Institut national de recherche en sciences et technologies du numérique · Yale University
Abstract
Abstract. We present a new hardware-efficient paradigm for universal quantum computation which is based on encoding, protecting and manipulating quantum information in a quantum harmonic oscillator. This proposal exploits multi-photon driven dissipative processes to encode quantum information in logical bases composed of Schrödinger cat states. More precisely, we consider two schemes. In a first scheme, a two-photon driven dissipative process is used to stabilize a logical qubit basis of two-component Schrödinger cat states. While such a scheme ensures a protection of the logical qubit against the photon dephasing errors, the prominent error channel of single-photon loss induces bit-flip type errors that…
Citation impact
- FWCI
- 49.92
- Percentile
- 100%
- References
- 39
Authors
6Topics & keywords
- Physics
- Qubit
- Quantum computer
- Quantum error correction
- Dissipative system
- Quantum mechanics
- Quantum information
- Photon
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