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Transition from linear- to nonlinear-focusing regime in filamentation

机译:细丝从线性聚焦到非线性聚焦的转变

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Laser filamentation in gases is often carried out in the laboratory with focusing optics to better stabilize the filament, whereas real-world applications of filaments frequently involve collimated or near-collimated beams. It is well documented that geometrical focusing can alter the properties of laser filaments and, consequently, a transition between a collimated and a strongly focused filament is expected. Nevertheless, this transition point has not been identified. Here, we propose an analytical method to determine the transition, and show that it corresponds to an actual shift in the balance of physical mechanisms governing filamentation. In high-NA conditions, filamentation is primarily governed by geometrical focusing and plasma effects, while the Kerr nonlinearity plays a more significant role as NA decreases. We find the transition between the two regimes to be relatively insensitive to the intrinsic laser parameters, and our analysis agrees well with a wide range of parameters found in published literature.
机译:气体中的激光灯丝化通常在实验室中使用聚焦光学器件来更好地稳定灯丝,而灯丝在现实世界中的应用经常涉及准直光束或准直光束。众所周知,几何聚焦可以改变激光灯丝的特性,因此,在准直灯丝和强聚焦灯丝之间会出现过渡。但是,尚未确定此过渡点。在这里,我们提出了一种确定过渡的分析方法,并表明它与控制长丝的物理机制平衡中的实际位移相对应。在高NA条件下,细丝化主要受几何聚焦和等离子体效应支配,而Kerr非线性随着NA的降低而发挥更大的作用。我们发现这两种状态之间的过渡对固有激光参数相对不敏感,并且我们的分析与已发表文献中的各种参数非常吻合。

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