22 pages, 16 figuresInternational audienceQuantum error correction with biased-noised qubits can drastically reduce the hardware overhead for universal and fault-tolerant quantum computation. Cat qubits are a promising realization of biased-noised qubits as they feature an exponential error bias inherited from their non-local encoding in the phase space of a quantum harmonic oscillator. To confine the state of an oscillator to the cat qubit manifold, two main approaches have been considered so far: a Kerr-based Hamiltonian confinement with high gate performances, and a dissipative confinement with robust protection against a broad range of noise mechanisms. We introduce a new combined dissipative and Hamiltonian confinement scheme based on ...
International audienceQuantum superpositions of macroscopically distinct classical states, so-called...
We propose a theoretical protocol to implement multiqubit geometric gates (i.e., the M{\o}lmer-S{\o}...
In this thesis, we develop several tools in the direction of autonomous Quantum Error Correction (QE...
22 pages, 16 figuresInternational audienceQuantum error correction with biased-noised qubits can dra...
Quantum error correction with biased-noise qubits can drastically reduce the hardware overhead for u...
Encoding quantum information onto bosonic systems is a promising route to quantum error correction. ...
Abstract. We present a new hardware-efficient paradigm for universal quantum computation which is ba...
10 pages, 7 figuresKerr nonlinear oscillators driven by a two-photon process are promising systems t...
Submitted to SciPost Lecture Notes. To appear in 'Quantum Information Machines; Lecture Notes of the...
Kerr nonlinear oscillators driven by a two-photon process are promising systems to encode quantum in...
22 pages, 11 figuresInternational audienceWe present a 1D repetition code based on the so-called cat...
Quantum systems can occupy peculiar states, such as superposition or entangled states. These states ...
16 pages, 13 figuresWe estimate and analyze the error rates and the resource overheads of the repeti...
15 pages, 9 figuresBosonic cat qubits stabilized by two-photon driven dissipation benefit from expon...
Quantum superpositions of macroscopically distinct classical states, so-called Schr\"{o}dinger cat s...
International audienceQuantum superpositions of macroscopically distinct classical states, so-called...
We propose a theoretical protocol to implement multiqubit geometric gates (i.e., the M{\o}lmer-S{\o}...
In this thesis, we develop several tools in the direction of autonomous Quantum Error Correction (QE...
22 pages, 16 figuresInternational audienceQuantum error correction with biased-noised qubits can dra...
Quantum error correction with biased-noise qubits can drastically reduce the hardware overhead for u...
Encoding quantum information onto bosonic systems is a promising route to quantum error correction. ...
Abstract. We present a new hardware-efficient paradigm for universal quantum computation which is ba...
10 pages, 7 figuresKerr nonlinear oscillators driven by a two-photon process are promising systems t...
Submitted to SciPost Lecture Notes. To appear in 'Quantum Information Machines; Lecture Notes of the...
Kerr nonlinear oscillators driven by a two-photon process are promising systems to encode quantum in...
22 pages, 11 figuresInternational audienceWe present a 1D repetition code based on the so-called cat...
Quantum systems can occupy peculiar states, such as superposition or entangled states. These states ...
16 pages, 13 figuresWe estimate and analyze the error rates and the resource overheads of the repeti...
15 pages, 9 figuresBosonic cat qubits stabilized by two-photon driven dissipation benefit from expon...
Quantum superpositions of macroscopically distinct classical states, so-called Schr\"{o}dinger cat s...
International audienceQuantum superpositions of macroscopically distinct classical states, so-called...
We propose a theoretical protocol to implement multiqubit geometric gates (i.e., the M{\o}lmer-S{\o}...
In this thesis, we develop several tools in the direction of autonomous Quantum Error Correction (QE...