We describe a scheme for the efficient generation of microwave photon pairs by parametric down-conversion in a superconducting transmission line resonator coupled to a Cooper-pair box serving as an artificial atom. By properly tuning the first three levels with respect to the cavity modes, the down-conversion probability may reach the percentage level at good fidelity. We show this by numerically simulating the dissipative quantum dynamics of the coupled cavity-box system and discussing the effects of dephasing and relaxation in the solid state environment. The setup analyzed here might form the basis for a future on-chip source of entangled microwave photons, e.g., using Franson's idea of energy-time entanglement
The generation and control of quantum states of light constitute fundamental tasks in cavity quantum...
Quantum systems can occupy peculiar states, such as superposition or entangled states. These states ...
The generation and control of quantum states of light constitute fundamental tasks in cav-ity quantu...
We describe a scheme for the efficient generation of microwave photon pairs by parametric down-conve...
We propose a hybrid quantum gate between an atom and a microwave photon in a superconducting coplana...
We propose an efficient microwave-photonic modulator as a resource for stationary entangled microwav...
We propose an efficient microwave-photonic modulator as a resource for stationary entangled microwav...
We propose a scheme for entangling the optical and microwave output modes of the respective cavities...
We propose a scheme for entangling the optical and microwave output modes of the respective cavities...
We propose a scheme for entangling the optical and microwave output modes of the respective cavities...
PhD Thesis: Superconducting circuit quantum electrodynamics (QED) has developed into a powerful pla...
Quantum optics in superconducting circuits, known as circuit QED, studies the interaction of photons...
Superconducting circuits represent a platform actively researched for its potential use in quantum ...
Entangling two remote quantum systems that never interact directly is an essential primitive in quan...
The flexible engineering of superconducting circuits, together with the nonlinearity available from ...
The generation and control of quantum states of light constitute fundamental tasks in cavity quantum...
Quantum systems can occupy peculiar states, such as superposition or entangled states. These states ...
The generation and control of quantum states of light constitute fundamental tasks in cav-ity quantu...
We describe a scheme for the efficient generation of microwave photon pairs by parametric down-conve...
We propose a hybrid quantum gate between an atom and a microwave photon in a superconducting coplana...
We propose an efficient microwave-photonic modulator as a resource for stationary entangled microwav...
We propose an efficient microwave-photonic modulator as a resource for stationary entangled microwav...
We propose a scheme for entangling the optical and microwave output modes of the respective cavities...
We propose a scheme for entangling the optical and microwave output modes of the respective cavities...
We propose a scheme for entangling the optical and microwave output modes of the respective cavities...
PhD Thesis: Superconducting circuit quantum electrodynamics (QED) has developed into a powerful pla...
Quantum optics in superconducting circuits, known as circuit QED, studies the interaction of photons...
Superconducting circuits represent a platform actively researched for its potential use in quantum ...
Entangling two remote quantum systems that never interact directly is an essential primitive in quan...
The flexible engineering of superconducting circuits, together with the nonlinearity available from ...
The generation and control of quantum states of light constitute fundamental tasks in cavity quantum...
Quantum systems can occupy peculiar states, such as superposition or entangled states. These states ...
The generation and control of quantum states of light constitute fundamental tasks in cav-ity quantu...