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Four-phase patterns in a forced nonlinear optical oscillator

机译:强制非线性光学振荡器中的四相模式

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We present preliminary theoretical and experimental results indicating that a high Fresnel number nonlinear optical oscillator with planar mirrors can display four-phase multistability, eventually leading to four-phase patterns. Such situation is similar to that emerging in extended oscillatory systems forced within a 4:1 resonance and, to the best of our knowledge, has not been predicted nor observed previously in an optical system. The fact that rocking (the forcing of a nonlinear oscillator around its natural frequency -1:1 resonance- with an amplitude modulated periodic signal) is able to transform phase invariant systems into phase bistable ones suggests that a similar forcing, applied now to an already phase bistable system, could lead to four-phase multistability. Here we explore such possibility both theoretically and experimentally.
机译:我们提出了初步理论和实验结果,表明具有平面镜的高菲涅耳数非线性光学振荡器可以显示四相多倍性,最终导致四相模式。这种情况类似于在4:1的共振中强制的扩展振荡系统中的出现,并且据我们所知,之前尚未在光学系统中预测也没有观察到。摇摆的事实(围绕其自然频率-1:1的非线性振荡器迫使与幅度调制的周期性信号)能够将阶段不变的系统变换为相位的双稳态系统,表明类似的强制性地应用于已经应用相位双稳态系统可以导致四相多个。在这里,我们在理论和实验中探索了这种可能性。

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