Chalupský Jaromír, Burian Tomáš, Hájková Věra, Juha Libor, Polcar Tomáš, Gaudin Jérôme, Nagasono Mitsuru, Sobierajski Ryszard, Yabashi Makina, Krzywinski Jacek
Opt Express. 2013 Nov 4;21(22):26363-75. doi: 10.1364/OE.21.026363.
We present an extended theoretical background of so-called fluence scan (f-scan or F-scan) method, which is frequently being used for offline characterization of focused short-wavelength (EUV, soft X-ray, and hard X-ray) laser beams [J. Chalupský et al., Opt. Express 18, 27836 (2010)]. The method exploits ablative imprints in various solids to visualize iso-fluence beam contours at different fluence and/or clip levels. An f-scan curve (clip level as a function of the corresponding iso-fluence contour area) can be generated for a general non-Gaussian beam. As shown in this paper, fluence scan encompasses important information about energy distribution within the beam profile, which may play an essential role in laser-matter interaction research employing intense non-ideal beams. Here we for the first time discuss fundamental properties of the f-scan function and its inverse counterpart (if-scan). Furthermore, we extensively elucidate how it is related to the effective beam area, energy distribution, and to the so called Liu's dependence [J. M. Liu, Opt. Lett. 7, 196 (1982)]. A new method of the effective area evaluation based on weighted inverse f-scan fit is introduced and applied to real data obtained at the SCSS (SPring-8 Compact SASE Source) facility.
我们介绍了所谓的注量扫描(f扫描或F扫描)方法的扩展理论背景,该方法常用于聚焦短波长(极紫外、软X射线和硬X射线)激光束的离线表征[J. Chalupský等人,《光学快报》18, 27836 (2010)]。该方法利用各种固体中的烧蚀印记来可视化不同注量和/或截取水平下的等注量光束轮廓。对于一般的非高斯光束,可以生成f扫描曲线(截取水平作为相应等注量轮廓面积的函数)。如本文所示,注量扫描包含了关于光束轮廓内能量分布的重要信息,这在使用强非理想光束的激光与物质相互作用研究中可能起着至关重要的作用。在此,我们首次讨论f扫描函数及其反函数(if扫描)的基本特性。此外,我们还详细阐述了它与有效光束面积、能量分布以及所谓的刘氏相关性[J. M. Liu,《光学快报》7, 196 (1982)]之间的关系。我们引入了一种基于加权反f扫描拟合的有效面积评估新方法,并将其应用于在SCSS(SPring-8紧凑型自放大自发辐射源)设施获得的实际数据。