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用于超短脉冲激光应用的负轴棱锥的制造与评估。

Fabrication and evaluation of negative axicons for ultrashort pulsed laser applications.

作者信息

Schwarz Simon, Roth Gian-Luca, Rung Stefan, Esen Cemal, Hellmann Ralf

出版信息

Opt Express. 2020 Aug 31;28(18):26207-26217. doi: 10.1364/OE.401084.

Abstract

We report on the fabrication and evaluation of a sharp tip negative axicon paving the way for applications in high-power ultrashort pulsed laser systems. The negative axicon is manufactured by applying a two-step all laser-based process chain consisting of ultrashort pulsed laser ablation and CO laser polishing finishing the component in less than 5 minutes. The finalized negative axicon reveals a surface roughness of 18 nm, fulfilling optical quality. Two measurement setups, including the ultrashort pulsed laser itself, are used to evaluate the formation of Bessel beams in detail. By applying a focusing lens behind the negative axicon, well-developed Bessel beams are generated while their lengths depend on the distance between the negative axicon and the lens. Furthermore, the diameter of the Bessel beams increase strongly with the propagation distance. By adding a second focusing lens, Bessel beams are generated at its focal position, being almost invariant of its position. Hence, the typical Bessel beam intensity distribution is observed over an entire moving range of this second lens of 300 mm. While these Bessel beams show superior quality in terms of sharp peaks with homogeneous concentric rings, only minor deviations in intensity and diameter are observed over the moving range.

摘要

我们报道了一种尖锐尖端负轴棱锥的制造与评估,这为其在高功率超短脉冲激光系统中的应用铺平了道路。该负轴棱锥通过两步全激光工艺链制造而成,该工艺链由超短脉冲激光烧蚀和CO激光抛光组成,在不到5分钟的时间内完成组件加工。最终制成的负轴棱锥表面粗糙度为18纳米,达到了光学质量要求。使用两种测量装置,包括超短脉冲激光本身,来详细评估贝塞尔光束的形成。在负轴棱锥后面放置一个聚焦透镜时,会产生发育良好的贝塞尔光束,其长度取决于负轴棱锥与透镜之间的距离。此外,贝塞尔光束的直径随着传播距离的增加而显著增大。添加第二个聚焦透镜时,会在其焦点位置产生贝塞尔光束,且几乎不受其位置的影响。因此,在第二个透镜300毫米的整个移动范围内都能观察到典型的贝塞尔光束强度分布。虽然这些贝塞尔光束在具有均匀同心环的尖锐峰值方面表现出卓越的质量,但在移动范围内仅观察到强度和直径的微小偏差。

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