Control of single-photon routing in a T-shaped waveguide by another atom
Abstract
Quantum routers with a high routing rate of much more than 0.5 are of great importance for quantum networks. We provide a scheme to perform bidirectional high routing-rate transfer in a T-shaped coupled-resonator waveguide (CRW), which extends a recent unidirectional scheme proposed by Lu et al. (Opt Express 23:22955, 2015). By locating an extra two-level atom in the infinite CRW channel of the T-shaped CRW with a three-level system, an effective potential is generated. Our numerical results show that high routing capability from the infinite CRW channel to the semi-infinite channel can be achieved, and routing capability from the semi-infinite CRW channel to the infinite channel can also be significantly enhanced, with the help of the effective potential. Therefore, the proposed double-atom configuration could be utilized as a bidirectional quantum routing controller to implement high transfer rate routing of single photons.
- Publication:
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Quantum Information Processing
- Pub Date:
- April 2018
- DOI:
- 10.1007/s11128-018-1850-9
- Bibcode:
- 2018QuIP...17...78H
- Keywords:
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- Quantum routing;
- Scattering theory;
- Optical waveguide