Delayed feedback control of the self-induced motion of localized structures of light

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Date
2014
Volume
1924
Issue
Journal
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Publisher
Berlin : Weierstraß-Institut für Angewandte Analysis und Stochastik
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Abstract

We investigate a control of the motion of localized structures of light by means of delay feedback in the transverse section of a broad area nonlinear optical system. The delayed feedback is found to induce a spontaneous motion of a solitary localized structure that is stationary and stable in the absence of feedback. We focus our analysis on an experimentally relevant system namely the Vertical-Cavity Surface-Emitting Laser (VCSEL). In the absence of the delay feedback we present experimental evidence of stationary localized structures in a 80 m aperture VCSEL. The spontaneous formation of localized structures takes place above the lasing threshold and under optical injection. Then, we consider the effect of the time-delayed optical feedback and investigate analytically the role of the phase of the feedback and the carrier lifetime on the self-mobility properties of the localized structures. We show that these two parameters affect strongly the space time dynamics of two-dimensional localized structures. We derive an analytical formula for the threshold associated with drift instability of localized structures and a normal form equation describing the slow time evolution of the speed of the moving structure.

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Keywords
Semiconductor lasers, cacity solitions, delayed feedback, bifurcations, drift instability
Citation
Vladimirov, A. G., Pimenov, A., Gurevich, S. V., Panajotov, K., Averlant, E., & Tlidi, M. (2014). Delayed feedback control of the self-induced motion of localized structures of light (Vol. 1924). Berlin : Weierstraß-Institut für Angewandte Analysis und Stochastik.
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