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Role of multiple filaments in self-accelerating actions of laser filamentation in air

机译:多根长丝在空气中激光丝的自我加速作用的作用

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摘要

The nonlinear dynamics of multiple filaments in self-accelerating actions by using corrected accelerating parabolic beams (CAPBs) are numerically investigated. By increasing the number of main lobes, the curved filaments can be elongated, leading to a longer displacement. The replenished energy originating from curved multiple filaments (MFs) that constructively interfere with the central one plays a crucial role in the phenomenon. At the bifurcation position, a beam pattern in which secondary lobes tightly follow the main lobes is formed, which is beneficial for the accelerating action of MFs. A new curved filament is generated due to the merging of side-curved MFs, and its accelerating strength decreases gradually with further propagation. Moreover, a special spatiotemporal profile that enhances the possibility of acceleration is also formed. The use of the accelerating beam with the appropriate amount of main lobes provides a new approach to elongate curved filaments. (C) 2017 Published by Elsevier B.V.
机译:通过使用校正的加速抛物线束(CAPBS)来自加速动作中多根长丝的非线性动力学进行数值研究。通过增加主叶片的数量,可以伸长弯曲的细丝,导致较长的位移。源自弯曲多长丝(MFS)的补充能量,其建设性地干扰中央的多丝(MFS)在现象中起着至关重要的作用。在分叉位置处,形成其中次级裂片的光束图案形成为主叶片,这有利于MFS的加速作用。一个新的弯曲丝由于侧弯曲的MF的合并产生的,并且其加速强度进一步传播逐渐减小。此外,还形成了增强加速度的可能性的特殊时空型材。使用适量的主要裂片的加速光束提供了一种新的弯曲弯曲丝的新方法。 (c)2017年由Elsevier B.V发布。

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