单模均匀加宽激光器的洛伦兹模型:不可预测区域的解析测定

S. Ayadi, O. Haeberlé
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引用次数: 3

摘要

我们应用调和展开导出了Lorenz-Haken方程的解析解。用该方法描述了单模均匀加宽激光器的规则和周期自脉冲状态。当人口衰减率p的比值小于0:11时,这些周期解出现。我们还证明了Lorenz-Haken耗散系统在特征抽运速率“2CP”[7]时具有周期性的趋势,接近第二激光阈值“2C2th”(不稳定阈值)。当泵浦参数2C增大时,激光器经历周期倍化过程。这种周期倍增的连锁反应导致了混乱。我们研究了这类解,并指出了系统经历不规则脉冲解的控制参数区域。我们以前已经应用这种分析过程来推导激光场展开的一阶、三阶和五阶谐波的振幅[7,17]。在这项工作中,我们扩展了这种方法,目的是获得高次谐波。我们证明了这种迭代方法确实局限于五阶,并且在上面,得到的解析解偏离了方程的数值直接解析。
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The Lorenz model for single-mode homogeneously broadened laser: analytical determination of the unpredictable zone
We have applied harmonic expansion to derive an analytical solution for the Lorenz-Haken equations. This method is used to describe the regular and periodic self-pulsing regime of the single mode homogeneously broadened laser. These periodic solutions emerge when the ratio of the population decay rate ℘ is smaller than 0:11. We have also demonstrated the tendency of the Lorenz-Haken dissipative system to behave periodic for a characteristic pumping rate “2CP”[7], close to the second laser threshold “2C2th”(threshold of instability). When the pumping parameter “2C” increases, the laser undergoes a period doubling sequence. This cascade of period doubling leads towards chaos. We study this type of solutions and indicate the zone of the control parameters for which the system undergoes irregular pulsing solutions. We had previously applied this analytical procedure to derive the amplitude of the first, third and fifth order harmonics for the laser-field expansion [7, 17]. In this work, we extend this method in the aim of obtaining the higher harmonics. We show that this iterative method is indeed limited to the fifth order, and that above, the obtained analytical solution diverges from the numerical direct resolution of the equations.
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来源期刊
Central European Journal of Physics
Central European Journal of Physics 物理-物理:综合
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审稿时长
3.3 months
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