Title :
Curvature instability and localized structures in passive diffractive resonators
Author :
Tlidi, Mustapha ; Vladimiros, A.G. ; Mandel, P.
Author_Institution :
Optique Nonlineaire Theor., Univ. Libre de Bruxelles, Belgium
Abstract :
Summary form only given. Stationary localized structures (LS) and localized patterns have been predicted in passive resonators in regimes where the homogeneous steady states exhibit a subcritical Turing (or modulational) instability. These solutions consist of bright or dark spots in the transverse profile of the intracavity field amplitude. They can be either spatially independent and randomly distributed or clusters forming well-defined spatial patterns in the transverse plane orthogonal to the propagation axis. We consider an optical cavity with plane mirrors filled with resonant two-level atoms and driven by a coherent plane-wave injected signal. We focus on the purely absorptive limit where the two-level atoms are in resonance with the injected field. In this system, two type of LS may be generated, depending on the magnitude of the critical wave number associated with the modulational instability: circular localized bright spots or a stationary localized single stripe. Both types of LS can form for the same value of parameters.
Keywords :
atom-photon collisions; cavity resonators; mirrors; nonlinear media; nonlinear optics; optical resonators; stability; bright spots; circular localized bright spots; coherent plane-wave injected signal; critical wave number; curvature instability; dark spots; homogeneous steady states; injected field; intracavity field amplitude; localized patterns; localized structures; modulational instability; optical cavity; passive diffractive resonators; passive resonators; plane mirrors; propagation axis; purely absorptive limit; resonant two-level atoms; spatial patterns; stationary localized single stripe; stationary localized structures; subcritical Turing instability; transverse plane; transverse profile; two-level atoms; Cooling; Diffraction; Physics;
Conference_Titel :
Quantum Electronics Conference, 2000. Conference Digest. 2000 International
Conference_Location :
Nice, France
Print_ISBN :
0-7803-6318-3
DOI :
10.1109/IQEC.2000.907983