Title :
Isolated period 3 and period 2 coexisting bifurcation orbits in diode lasers subject to optical injection: experiments and theory
Author :
Gavrielides, Athanasios ; Kovanis, V. ; Erneux, T. ; Simpson, T.B.
Author_Institution :
Nonlinear Opt. Center, Air Force Res. Lab., Kirkland AFB, NM, USA
Abstract :
Summary form only given. Experiments in semiconductor lasers subject to optical injection reveal unexpected periodic orbits as a function of the injection strength. It is well known that optical injection may destabilize the steady state of the laser and induce a Hopf bifurcation to sustained intensity oscillations at a frequency close to the relaxation frequency of the solitary laser. By further increasing the injection strength, period doubling bifurcations are then observed. We have found experimentally that period 3 orbits exist at injection levels close to the first period doubling bifurcation point This is clearly demonstrated by the optical spectrum. We have used a Fabry-Perot optical spectrum analyzer and two commercially available SDL lasers in a master-slave configuration. This nearby coexistence of period 3 and period 2 regimes has been observed for periodically modulated lasers.
Keywords :
bifurcation; laser stability; optical chaos; semiconductor lasers; Fabry-Perot optical spectrum analyzer; Hopf bifurcation; coexisting bifurcation orbits; diode lasers; injection strength; isolated orbits; laser rate equations; master-slave configuration; optical injection; period 2 orbits; period 3 orbits; period doubling bifurcations; periodically modulated lasers; relaxation frequency; semiconductor lasers; sustained intensity oscillations; Bifurcation; Diode lasers; Fabry-Perot; Frequency; Laser theory; Optical modulation; Orbits; Semiconductor lasers; Spectral analysis; Steady-state;
Conference_Titel :
Quantum Electronics Conference, 2000. Conference Digest. 2000 International
Conference_Location :
Nice, France
Print_ISBN :
0-7803-6318-3
DOI :
10.1109/IQEC.2000.908155