International audienceWe propose to encode a quantum bit of information in a superposition of coherent states of an oscillator, with four different phases. Our encoding in a single cavity mode, together with a protection protocol, significantly reduces the error rate due to photon loss. This protection is ensured by an efficient quantum error correction scheme employing the nonlinearity provided by a single physical qubit coupled to the cavity. We describe in detail how to implement these operations in a circuit quantum electrodynamics system. This proposal directly addresses the task of building a hardware-efficient quantum memory and can lead to important shortcuts in quantum computing architectures
International audienceA quantum system interacts with its environment, if ever so slightly, no matte...
A universal, large-scale quantum computer would be a powerful tool with applications of high value t...
Manipulating the state of a logical quantum bit (qubit) usually comes at the expense of exposing it ...
Abstract. We present a new hardware-efficient paradigm for universal quantum computation which is ba...
Text and figures edited for clarity. The claims of the paper remain the same. Author list fixedInter...
Abstract. We reapply our approach to designing nanophotonic quantum memories to formulate an optical...
We present a protocol to construct an arbitrary quantum circuit. The quantum bits (qubits) are encod...
We investigate the feasibility of implementing an elementary building block for quantum information ...
Abstract. Quantum error correction provides a fertile context for exploring the interplay of feedbac...
Quantum error correcting codes have been developed to protect a quantum computer from decoherence du...
International audienceThe development of quantum Josephson circuits has created a strong expectation...
In this thesis, we develop several tools in the direction of autonomous Quantum Error Correction (QE...
We propose an approach to quantum error correction based on coding and continuous syndrome readout v...
AbstractThe development of quantum Josephson circuits has created a strong expectation for reliable ...
We present a quantum error correction code which protects a qubit of information against general one...
International audienceA quantum system interacts with its environment, if ever so slightly, no matte...
A universal, large-scale quantum computer would be a powerful tool with applications of high value t...
Manipulating the state of a logical quantum bit (qubit) usually comes at the expense of exposing it ...
Abstract. We present a new hardware-efficient paradigm for universal quantum computation which is ba...
Text and figures edited for clarity. The claims of the paper remain the same. Author list fixedInter...
Abstract. We reapply our approach to designing nanophotonic quantum memories to formulate an optical...
We present a protocol to construct an arbitrary quantum circuit. The quantum bits (qubits) are encod...
We investigate the feasibility of implementing an elementary building block for quantum information ...
Abstract. Quantum error correction provides a fertile context for exploring the interplay of feedbac...
Quantum error correcting codes have been developed to protect a quantum computer from decoherence du...
International audienceThe development of quantum Josephson circuits has created a strong expectation...
In this thesis, we develop several tools in the direction of autonomous Quantum Error Correction (QE...
We propose an approach to quantum error correction based on coding and continuous syndrome readout v...
AbstractThe development of quantum Josephson circuits has created a strong expectation for reliable ...
We present a quantum error correction code which protects a qubit of information against general one...
International audienceA quantum system interacts with its environment, if ever so slightly, no matte...
A universal, large-scale quantum computer would be a powerful tool with applications of high value t...
Manipulating the state of a logical quantum bit (qubit) usually comes at the expense of exposing it ...