Ambat M V, Shaw J L, Pigeon J J, Miller K G, Simpson T T, Froula D H, Palastro J P
Opt Express. 2023 Sep 11;31(19):31354-31368. doi: 10.1364/OE.499839.
"Flying focus" techniques produce laser pulses with dynamic focal points that travel distances much greater than a Rayleigh length. The implementation of these techniques in laser-based applications requires the design of optical configurations that can both extend the focal range and structure the radial group delay. This article describes a method for designing optical configurations that produce ultrashort flying focus pulses with programmable-trajectory focal points. The method is illustrated by several examples that employ an axiparabola for extending the focal range and either a reflective echelon or a deformable mirror-spatial light modulator pair for structuring the radial group delay. The latter configuration enables rapid exploration and optimization of flying foci, which could be ideal for experiments.
“飞行焦点”技术产生具有动态焦点的激光脉冲,其传播距离远大于瑞利长度。在基于激光的应用中实施这些技术需要设计能够扩展焦深范围并构建径向群延迟的光学配置。本文描述了一种设计光学配置的方法,该配置可产生具有可编程轨迹焦点的超短飞行焦点脉冲。通过几个示例对该方法进行了说明,这些示例采用轴抛物线来扩展焦深范围,并使用反射阶梯或可变形镜 - 空间光调制器对来构建径向群延迟。后一种配置能够快速探索和优化飞行焦点,这对于实验可能是理想的。