Title :
Fast all-optical flip-flop memory exploiting the electric field nonlinearity of coherent laser amplifiers
Author :
Oksanen, Jani ; Tulkki, Jukka
Author_Institution :
Helsinki Univ. of Technol., Finland
fDate :
5/1/2006 12:00:00 AM
Abstract :
The coherent nonlinear feedback in an integrated optical flip-flop is studied in order to demonstrate device applications of laser amplifiers operated above the laser threshold. The nonlinear feedback is provided by the stabilizing fields of the laser amplifiers, interfering with coherent optical reference fields. In both stable states of the flip-flop, the nonlinear feedback allows the laser amplifiers to maintain an ever present photon population in the laser modes and to have an approximately constant carrier population. This enables faster response (switching times below 25 ps are reached in this work)than in conventional active optical flip-flop structures. The operation of the flip-flop is studied using a rate equation model accounting for the carrier densities and the complex electric fields in the different cavity modes of the laser amplifiers.
Keywords :
carrier density; flip-flops; laser cavity resonators; laser modes; light coherence; optical bistability; optical feedback; optical storage; all-optical flip-flop memory; carrier population; cavity modes; coherent laser amplifiers; coherent nonlinear feedback; electric field nonlinearity; field stability; laser modes; photon population; rate equation model; Flip-flops; Laser feedback; Laser modes; Laser stability; Nonlinear optical devices; Nonlinear optics; Optical amplifiers; Optical feedback; Semiconductor optical amplifiers; Stimulated emission; Laser amplifiers; optical bistability; optical memory;
Journal_Title :
Quantum Electronics, IEEE Journal of
DOI :
10.1109/JQE.2006.874004