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Numerical modeling of extreme events observed in the all-solid-state laser with a saturable absorber

机译:全固态激光器中观察到饱和吸收剂的极端事件的数值模拟

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Extreme events (pulses of high intensity) are observed to appear spontaneously in some chaotic regimes of the self-pulsing all-solid-state laser with a saturable absorber (diode-pumped Nd:YVO4 + Cr:YAG). Until now, the mechanism of build-up of these pulses has remained unknown. Besides the practical interest in this device of widespread use, the laser with a saturable absorber is homologous to the Benard-Rayleigh system with a solute. Experimental observations show the events to appear even if a few different transverse modes oscillate. This leads to a description in terms of a few ordinary differential equations, instead of the more usual description with an equation in partial derivatives. A minimum of five transverse modes and hole burning in the absorber are found necessary elements of the description. On the other hand, phases among the spatial Fourier components do not need to be taken into consideration. The demonstration that, in some systems at least, the formation of extreme events can be explained with a few interacting degrees of freedom has a broad impact. (C) 2021 Optical Society of America
机译:在具有可饱和吸收体(二极管泵浦Nd:YVO4+Cr:YAG)的自脉冲全固态激光器的一些混沌区域中,观察到自发出现极端事件(高强度脉冲)。到目前为止,这些脉冲的形成机制仍然未知。除了对这种广泛使用的装置的实际兴趣之外,具有可饱和吸收体的激光器与具有溶质的Benard-Rayleigh系统是同源的。实验观察表明,即使几个不同的横模振荡,这些事件也会出现。这导致用一些常微分方程来描述,而不是用偏导数来描述更常见的方程。吸收材料中至少有五个横模和烧孔是描述的必要元素。另一方面,不需要考虑空间傅里叶分量之间的相位。至少在某些系统中,极端事件的形成可以用几个相互作用的自由度来解释,这种证明具有广泛的影响。(2021)美国光学学会

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