Tunable single-photon frequency conversion in a Sagnac interferometer
arXiv:1308.0086 · doi:10.1038/srep03555
Abstract
We study the single-photon frequency conversion of a five-level emitter coupled to a Sagnac interferometer. We show that the unity conversion efficiency can be achieved either in resonance or off-resonance case under the ideal condition. In particular, the frequency of the output photon can be controlled by the frequencies and Rabi frequencies of the external driving fields.
Welcome to comment! (5 pages, 4 figures)
References in corpus (14)
- Controllable scattering of photons inside a one-dimensional resonator waveguide
- Strongly Correlated Two-Photon Transport in One-Dimensional Waveguide Coupled to A Two-Level System
- Persistent Quantum Beats and Long-Distance Entanglement from Waveguide-Mediated Interactions
- Visible-to-telecom quantum frequency conversion of light from a single quantum emitter
- Quantum Frequency Translation of Single-Photon States in Photonic Crystal Fiber
- Strongly-correlated multi-particle transport in one-dimension through a quantum impurity: an outline of exact and complete solutions
- Controlling Quasibound States in 1D Continuum Through Electromagnetic Induced Transparency Mechanism
- Controlling single-photon transport in waveguides with finite cross-section
- Quantum frequency downconversion experiment
- Stimulated Emission from a single excited atom in a waveguide
- Photon blockade induced by atoms with Rydberg coupling
- Single-photon Sagnac interferometer
- Addressing individual atoms in optical lattices with standing-wave driving fields
- Two-Photon Scattering in One Dimension by Localized Two-Level System
Cited by in corpus (12)
- Single-photon frequency conversion via a giant -type atom
- Controllable single-photon frequency converter via a one-dimensional waveguide
- Quantum synchronization and quantum state sharing in irregular complex network
- Dynamical theory of single photon transport in a one-dimensional waveguide coupled to identical and non-identical emitters
- Control of single-photon transport in a one-dimensional waveguide by another single photon
- Phase controlled single-photon nonreciprocal transmission in a one-dimensional waveguide
- Nonreciprocal single-photon frequency converter via multiple semi-infinite coupled-resonator waveguides
- Measurement of deep-subwavelength emitter separation in a waveguide-QED system
- Multi-path photon-phonon converter in optomechanical system at single-quantum level
- Limits of single-photon storage in a single -type atom
- Single-photon frequency conversion and multi-mode entanglement via constructive interference on Sagnac Loop
- Phase sensitive photonic flash