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基于固态氩丝的极紫外激光等离子体源。

XUV laser-plasma source based on solid Ar filament.

作者信息

Peth Christian, Kalinin Anton, Barkusky Frank, Mann Klaus, Toennies J Peter, Rusin Lev Yu

机构信息

Laser-Laboratorium Göttingen e.V., Hans-Adolf-Krebs-Weg 1, D-37077 Göttingen, Germany.

出版信息

Rev Sci Instrum. 2007 Oct;78(10):103509. doi: 10.1063/1.2801882.

Abstract

We present a laser driven soft x-ray source based on a novel solid argon filament. The continuously flowing micron-sized filament (diameter approximately 56 microm, flow speed approximately 5 mms) was used as a laser target in order to generate a plasma source of high brightness in the "water window" (2.2-4.4 nm) spectral range. The emission properties of the source were characterized in detail with respect to crucial parameters such as positional and energy stability using an extreme ultraviolet (XUV) sensitive pinhole camera and an XUV spectrometer. The results are compared with an argon plasma based on a gas puff target operated under the same experimental conditions showing an increase of the brilliance by a factor of 84. By changing the capillary geometry from a constant diameter to a convergent shape the flow speed of the filament was significantly increased up to 250 mms, facilitating the operation at higher repetition rates.

摘要

我们展示了一种基于新型固态氩丝的激光驱动软X射线源。连续流动的微米级细丝(直径约56微米,流速约5毫米/秒)被用作激光靶,以便在“水窗”(2.2 - 4.4纳米)光谱范围内产生高亮度的等离子体源。使用极紫外(XUV)敏感针孔相机和XUV光谱仪,针对位置和能量稳定性等关键参数详细表征了该源的发射特性。将结果与在相同实验条件下运行的基于喷气靶的氩等离子体进行比较,结果表明亮度提高了84倍。通过将毛细管几何形状从恒定直径改为收敛形状,细丝的流速显著提高至250毫米/秒,有利于在更高重复频率下运行。

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