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Quantum optical effect for switching and slow light applications.
| Content Provider | CiteSeerX |
|---|---|
| Author | Manzacca, G. Cincotti, G. |
| Abstract | Abstract. In this paper, the modeling of optically tunable all-optical switching and slow-light device is addressed. We consider cavity-based add-drop and direct-coupled filters as switching elements, and analyze the static and dynamic behaviours; for tunable delay lines, we investigate coupled-resonator optical waveguide (CROW) structures. The tunability of the system under investigation is discussed considering the joint interference effect created by a not excited dipole in a cavity in Purcell regime, and the interference effect in a quantum state by Electromagnetic Induced Transparency (EIT). |
| File Format | |
| Access Restriction | Open |
| Subject Keyword | Quantum Optical Effect Slow Light Application Cavity-based Add-drop Dynamic Behaviour Quantum State Tunable Delay Line Coupled-resonator Optical Waveguide Excited Dipole Direct-coupled Filter Tunable All-optical Switching Electromagnetic Induced Transparency Interference Effect Slow-light Device Purcell Regime Joint Interference Effect |
| Content Type | Text |
| Resource Type | Article |