We present a scheme for the dissipative preparation of an entangled steady state of two superconducting qubits in a circuit quantum electrodynamics (QED) setup. Combining resonator photon loss—a dissipative process already present in the setup—with an effective two-photon microwave drive, we engineer an effective decay mechanism which prepares a maximally entangled state of the two qubits. This state is then maintained as the steady state of the driven, dissipative evolution. The performance of the dissipative state preparation protocol is studied analytically and verified numerically. In view of the experimental implementation of the presented scheme we investigate the effects of potential experimental imperfections and show that our schem...
Effective quantum communication between remote quantum nodes requires high fidelity quantum state tr...
International audienceWe present and analyze a protocol for driven-dissipatively preparing and stabi...
International audienceWe present and analyze a protocol for driven-dissipatively preparing and stabi...
5 pages, 4 figuresInternational audienceWe propose a dissipation engineering scheme that prepares an...
We propose a dissipation-engineering scheme that prepares and protects a maximally entangled state o...
We propose an experimentally feasible scheme for the dissipative generation of stable entanglement o...
Superconducting quantum circuits provide a promising avenue for scalable quantum computation and sim...
Entanglement can exist not only in the microscopic system (e.g., atom, photon, and ion trap) but als...
We propose and study the use of photon-mediated interactions for the generation of long-range steady...
For two two-level atoms coupled to a single Bosonic mode that is driven and heavily damped, the stea...
We describe a scheme for the efficient generation of microwave photon pairs by parametric down-conve...
We study photon condensation phenomena in a driven and dissipative array of superconducting microwav...
We report on a mechanism to optimize the generation of steady-state entanglement in a system of coup...
We study photon condensation phenomena in a driven and dissipative array of superconducting microwav...
Entangling two remote quantum systems that never interact directly is an essential primitive in quan...
Effective quantum communication between remote quantum nodes requires high fidelity quantum state tr...
International audienceWe present and analyze a protocol for driven-dissipatively preparing and stabi...
International audienceWe present and analyze a protocol for driven-dissipatively preparing and stabi...
5 pages, 4 figuresInternational audienceWe propose a dissipation engineering scheme that prepares an...
We propose a dissipation-engineering scheme that prepares and protects a maximally entangled state o...
We propose an experimentally feasible scheme for the dissipative generation of stable entanglement o...
Superconducting quantum circuits provide a promising avenue for scalable quantum computation and sim...
Entanglement can exist not only in the microscopic system (e.g., atom, photon, and ion trap) but als...
We propose and study the use of photon-mediated interactions for the generation of long-range steady...
For two two-level atoms coupled to a single Bosonic mode that is driven and heavily damped, the stea...
We describe a scheme for the efficient generation of microwave photon pairs by parametric down-conve...
We study photon condensation phenomena in a driven and dissipative array of superconducting microwav...
We report on a mechanism to optimize the generation of steady-state entanglement in a system of coup...
We study photon condensation phenomena in a driven and dissipative array of superconducting microwav...
Entangling two remote quantum systems that never interact directly is an essential primitive in quan...
Effective quantum communication between remote quantum nodes requires high fidelity quantum state tr...
International audienceWe present and analyze a protocol for driven-dissipatively preparing and stabi...
International audienceWe present and analyze a protocol for driven-dissipatively preparing and stabi...