Meucci Riccardo, Marc Ginoux Jean, Mehrabbeik Mahtab, Jafari Sajad, Clinton Sprott Julien
Istituto Nazionale di Ottica-CNR, Largo E. Fermi 6, 50125 Firenze, Italy.
Laboratoire CPT, Université de Toulon, CS 60584, 83041 Toulon Cedex 9, France.
Chaos. 2022 Aug;32(8):083111. doi: 10.1063/5.0093727.
We revisit the laser model with cavity loss modulation, from which evidence of chaos and generalized multistability was discovered in 1982. Multistability refers to the coexistence of two or more attractors in nonlinear dynamical systems. Despite its relative simplicity, the adopted model shows us how the multistability depends on the dissipation of the system. The model is then tested under the action of a secondary sinusoidal perturbation, which can remove bistability when a suitable relative phase is chosen. The surviving attractor is the one with less dissipation. This control strategy is particularly useful when one of the competing attractors is a chaotic attractor.
我们重新审视具有腔损耗调制的激光模型,1982年从中发现了混沌和广义多重稳定性的证据。多重稳定性是指非线性动力系统中两个或更多吸引子的共存。尽管所采用的模型相对简单,但它向我们展示了多重稳定性如何依赖于系统的耗散。然后在二次正弦扰动的作用下对该模型进行测试,当选择合适的相对相位时,二次正弦扰动可以消除双稳性。幸存的吸引子是耗散较小的那个。当相互竞争的吸引子之一是混沌吸引子时,这种控制策略特别有用。