Pulse profile and transitions to chaos in a laser with a saturable absorber

S. Tatarkova, V. V. Tuchin
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Abstract

The dynamics of a single-mode CO2 laser with a saturable absorber is investigated numerically allowing for phase relationships and offsets between the lines. A detailed study is made of bifurcation of stationary (steady-state) and periodic solutions in the case of zero offset. It is shown that in the system under investigation there are two possible scenarios of transition to chaos for the selected parameters of a CO2/CH3I laser: period doubling and intermittency. An analysis is made of a change in the spectrum of the characteristic Lyapunov exponents in the chaotic lasing range. The predicted pulsed profiles are in good agreement with the experimental results. It is shown that in a certain range of parameters a laser with an absorber exhibits a generalized multistability.
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具有饱和吸收体的激光的脉冲轮廓和向混沌的跃迁
在考虑相位关系和线间偏移的情况下,用数值方法研究了带饱和吸收器的单模CO2激光器的动力学。详细研究了零偏移情况下稳态解和周期解的分岔问题。结果表明,在所研究的系统中,CO2/CH3I激光器的选定参数有两种可能的过渡情景:周期加倍和间歇。分析了混沌激光范围内特征李雅普诺夫指数谱的变化。预测的脉冲分布与实验结果吻合较好。结果表明,在一定的参数范围内,具有吸收体的激光器具有广义多稳定性。
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Large-Aperture CO2 Amplifier Fast objective for focusing laser light Increasing the mode-locking efficiency of a cw solid-state laser with an auxiliary cavity Regarding the paper "Stability of the eigenvalue solutions in a nonlinear directional coupler" by V. P. Torchigin et al. [Sov. J. Quantum Electron. 21, 1144–1147 (1991)] Correlation diagnostics of random spatially nonuniform optical fields
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