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
The generation of photon pairs is useful for a broad range of applications, from the fundamental (ex...
We present an experimental demonstration of heralded single photons prepared in pure quantum states ...
From quantum computation to quantum key distribution, many quantum-enhanced applications rely on the...
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...
Cavity quantum electrodynamics (cavity QED) with single atoms and single photons provides a promisin...
The possibility of creating a scaleable quantum network by interconverting photonic and atomic qubit...
Cavity quantum electrodynamics (cavity QED) with single atoms and single photons provides a promisin...
Single photons - discrete wavepackets of light - are one of the most fundamental entities in physics...
Single photons - discrete wavepackets of light - are one of the most fundamental entities in physics...
Cavity quantum electrodynamics (cavity QED) with single atoms and single photons provides a promisin...
Single photons - discrete wavepackets of light - are one of the most fundamental entities in physics...
Quantum optics experiments frequently involve interfering single photons and coherent states. In the...
Neutral atoms are ideal objects for the deterministic processing of quantum information. Entanglemen...
Bright sources of on-demand single photons are a fundamental resource [1], required for linear optic...
The generation of photon pairs is useful for a broad range of applications, from the fundamental (ex...
We present an experimental demonstration of heralded single photons prepared in pure quantum states ...
From quantum computation to quantum key distribution, many quantum-enhanced applications rely on the...
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...
Cavity quantum electrodynamics (cavity QED) with single atoms and single photons provides a promisin...
The possibility of creating a scaleable quantum network by interconverting photonic and atomic qubit...
Cavity quantum electrodynamics (cavity QED) with single atoms and single photons provides a promisin...
Single photons - discrete wavepackets of light - are one of the most fundamental entities in physics...
Single photons - discrete wavepackets of light - are one of the most fundamental entities in physics...
Cavity quantum electrodynamics (cavity QED) with single atoms and single photons provides a promisin...
Single photons - discrete wavepackets of light - are one of the most fundamental entities in physics...
Quantum optics experiments frequently involve interfering single photons and coherent states. In the...
Neutral atoms are ideal objects for the deterministic processing of quantum information. Entanglemen...
Bright sources of on-demand single photons are a fundamental resource [1], required for linear optic...
The generation of photon pairs is useful for a broad range of applications, from the fundamental (ex...
We present an experimental demonstration of heralded single photons prepared in pure quantum states ...
From quantum computation to quantum key distribution, many quantum-enhanced applications rely on the...