We propose two different setups to generate single photons on demand using an atom in front of a mirror, along with either a beam splitter or a tunable coupling. We show that photon-generation efficiency of ?99% is straightforward to achieve. The proposed schemes are simple and easily tunable in frequency. The operation is relatively insensitive to dephasing and can be easily extended to generate correlated pairs of photons. They can also, in principle, be used to generate any photonic qubit of the form ?0+?1 in arbitrary wave packets, making them very attractive for quantum communication applications
A single photon source is realized with a cold atomic ensemble ($^{87}$Rb atoms). In the experiment,...
A source of deterministic single photons is proposed and demonstrated by the application of a measur...
Neutral atoms are ideal objects for the deterministic processing of quantum information. Entanglemen...
We propose two different setups to generate single photons on demand using an atom in front of a mir...
The possibility of creating a scaleable quantum network by interconverting photonic and atomic qubit...
The possibility of creating a scaleable quantum network by interconverting photonic and atomic qubit...
A single cesium atom trapped within the mode of an optical cavity is used to generate single photons...
A single cesium atom trapped within the mode of an optical cavity is used to generate single photons...
Cavity quantum electrodynamics (cavity QED) with single atoms and single photons provides a promisin...
Cavity quantum electrodynamics (cavity QED) with single atoms and single photons provides a promisin...
Cavity quantum electrodynamics (cavity QED) with single atoms and single photons provides a promisin...
By illuminating an individual rubidium atom stored in a tight optical tweezer with short resonant li...
Deterministic single-photon sources are important and ubiquitous in quantum information protocols. H...
Spontaneous Raman processes in cold atoms have been widely used in the past decade for generating si...
A single photon source is an enabling technology in device-independent quantum communication, quantu...
A single photon source is realized with a cold atomic ensemble ($^{87}$Rb atoms). In the experiment,...
A source of deterministic single photons is proposed and demonstrated by the application of a measur...
Neutral atoms are ideal objects for the deterministic processing of quantum information. Entanglemen...
We propose two different setups to generate single photons on demand using an atom in front of a mir...
The possibility of creating a scaleable quantum network by interconverting photonic and atomic qubit...
The possibility of creating a scaleable quantum network by interconverting photonic and atomic qubit...
A single cesium atom trapped within the mode of an optical cavity is used to generate single photons...
A single cesium atom trapped within the mode of an optical cavity is used to generate single photons...
Cavity quantum electrodynamics (cavity QED) with single atoms and single photons provides a promisin...
Cavity quantum electrodynamics (cavity QED) with single atoms and single photons provides a promisin...
Cavity quantum electrodynamics (cavity QED) with single atoms and single photons provides a promisin...
By illuminating an individual rubidium atom stored in a tight optical tweezer with short resonant li...
Deterministic single-photon sources are important and ubiquitous in quantum information protocols. H...
Spontaneous Raman processes in cold atoms have been widely used in the past decade for generating si...
A single photon source is an enabling technology in device-independent quantum communication, quantu...
A single photon source is realized with a cold atomic ensemble ($^{87}$Rb atoms). In the experiment,...
A source of deterministic single photons is proposed and demonstrated by the application of a measur...
Neutral atoms are ideal objects for the deterministic processing of quantum information. Entanglemen...