Polarization-controlled single photons.
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Summary
Vacuum-stimulated Raman transitions are driven between two magnetic substates of a 87Rb atom strongly coupled to an optical cavity, which produces a stream of single photons with alternating circular polarization in a predetermined spatiotemporal mode.
- Type
- article
- Published
- 2006-10-26
- Cited by
- 102
- References
- 19
- Access
- Open access
- OpenAlex
- https://openalex.org/W2011569184
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:34523774
Keywords
Photon, Physics, Polarization (electrochemistry), Atomic physics, Atom (system on chip)
References
- Deterministic Generation of Single Photons from One Atom Trapped in a Cavity
- Kuhn, Hennrich, and Rempe Reply:
- Controlled Single-Photon Emission from a Single Trapped Two-Level Atom
- Creation of entangled states of distant atoms by interference
- The benefit of doing things slowly: employing dissipation for the robust creation of entanglement between ions in spatially separate cavities
- Quantum beat of two single photons.
- Quantum State Transfer and Entanglement Distribution among Distant Nodes in a Quantum Network
- Efficient engineering of multiatom entanglement through single-photon detections.
- Measurement of subpicosecond time intervals between two photons by interference.
- Experimental realization of a localized one-photon state.
- Continuous generation of single photons with controlled waveform in an ion-trap cavity system
- Sequential generation of entangled multiqubit states.
- Time-resolved two-photon quantum interference
- Vacuum-stimulated cooling of single atoms in three dimensions
- A scheme for efficient quantum computation with linear optics
- Characterization of Single Photons using Two-Photon Interference
- Time-Resolved Two-Photon Quantum Interference
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- Generation and interfacing of single-photon light with matter and control of ultrafast atomic dynamics for quantum information processing
- Quantum Interface between an Atom and a Photon
- Single photons from a single atom trapped in a high-finesse optical cavity
- A single ion inside a miniature cavity
- Influence of Virtual Photon Process on the Generation of Squeezed Light from Atoms in an Optical Cavity
- Quantum state transfer between remote single atoms
- Cavity-based quantum networks with single atoms and optical photons
- Analyzing quantum jumps of one and two atoms strongly coupled to an optical cavity
- Analysis of adiabatic transfer in cavity quantum electrodynamics
- High purity bright single photon source.
- Cavity-assisted spontaneous emission as a single-photon source: Pulse shape and efficiency of one-photon Fock-state preparation
- Quantum teleportation of high-dimensional atomic ensemble states
- Phase shaping of single-photon wave packets
- Narrow-band single photons from a single-resonant optical parametric oscillator far below threshold
- From quantum feedback to probabilistic error correction: manipulation of quantum beats in cavity QED
- Photon–photon interactions with inner coupled double-cavity
- Polarization properties of Raman micromaser
- Single-photon sources–an introduction
- A versatile source of single photons for quantum information processing
- EIT-based quantum memory for single photons from cavity-QED
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