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Feedback control of mode-locked lasers with a tendency to Q-switch

机译:趋于Q开关的锁模激光器的反馈控制

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Control of lasers has a long history and, during the last decade, numerous works have been performed with the aim of testing various schemes of control of unstable states (periodic or stationary). Recently, there has been a renew of interest in techniques allowing control of steady states. As a main reason, a set of lasers with commercial applications (lasers mode-locked with semiconductor saturable absorbers) have a strong tendency to undergo an instability that brings the system into an unwanted Q-switch regime. In fact it is often difficult to avoid this instability because its origin (saturable losses) is unfortunately the ingredient needed for obtaining the desired physical effect (mode-locking of ultrashort pulses). Here, we present two aspects of this problem. First we show numerically that a simple technique used for stabilizing steady states in continuous-wave lasers can be used for stabilizing the desired state (regular mode-locking) in mode-locked lasers. This technique allows an easier optimization of lasers properties (pulse duration, etc.) by allowing to work in unusual regions of parameter values. These results are in agreement with the experimental demonstration of Schibli et al. Then, we show that stabilization of the desired state is not a sufficient condition for successful control. Indeed, if the desired state coexists with another unwanted state, the state eventually reached will depend on the full history of the system, and the stabilized state can be still out of reach. We show that this problem is all the more important when limitations are imposed on the allowed pump power. From the bifurcation analysis of the system, we deduce a protocol that permit to bring the system to the stabilized state.
机译:激光的控制历史悠久,在过去的十年中,已经进行了许多工作,目的是测试各种不稳定状态(周期性或静态)控制方案。最近,人们对允许控制稳态的技术有了新的兴趣。主要原因是,一组具有商业应用的激光器(与半导体可饱和吸收器锁模的激光器)很容易发生不稳定,从而使系统陷入不必要的Q开关状态。实际上,通常很难避免这种不稳定性,因为不幸的是,其起源(饱和损耗)是获得所需物理效果(超短脉冲的锁模)所需的成分。在这里,我们介绍此问题的两个方面。首先,我们从数字上表明,一种用于稳定连续波激光器中稳态的简单技术可用于稳定锁模激光器中的所需状态(常规锁模)。通过允许在参数值的异常区域中工作,此技术可以更轻松地优化激光器的性能(脉冲持续时间等)。这些结果与Schibli等人的实验证明相符。然后,我们表明所需状态的稳定化并不是成功控制的充分条件。实际上,如果期望状态与另一个不希望的状态共存,则最终达到的状态将取决于系统的整个历史记录,并且稳定状态可能仍然遥不可及。我们表明,当对允许的泵浦功率施加限制时,此问题就变得尤为重要。从系统的分叉分析中,我们得出了一个允许将系统带入稳定状态的协议。

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