Max-Planck-Arbeitsgruppe "Röntgenoptik" an der Friedrich-Schiller-Universität Jena, Max-Wien-Platz 1, D-07743 Jena, Germany.
J Xray Sci Technol. 1997 Jan 1;7(1):50-70. doi: 10.3233/XST-1997-7105.
The interaction of a sub-picosecond (sub-ps) laser with a high-Z target produces a hard x-ray continuum, but to our knowledge no high-resolution study of the line emission is known. We present here crystal spectroscopy as a tool for the observation of energetic line x-radiation from a sub-ps laser-produced plasma. Reflection properties of flat and bent crystals for x-ray spectroscopy are analyzed theoretically for both the Bragg and the Laue geometries and optimized for a crystal spectroscopy of hard (>50 keV) x-radiation. The crystal setup is optimized for spectroscopic applications with regard to high throughput and spectral resolution. The characteristic tantalum Kα,β- and Lα,β-line emissions from a sub-ps laser-produced plasma is observed for the first time. A resolving power of about 450 is achieved which is much higher than that for comparable absorption filter techniques (E/ΔE ≈ 15).
皮秒(sub-ps)激光与高 Z 靶的相互作用会产生硬 X 射线连续谱,但据我们所知,目前还没有关于线辐射的高分辨率研究。我们在此提出,晶体光谱学是观察皮秒激光产生等离子体中高能线 X 射线的一种工具。对于布拉格和劳厄几何结构,我们从理论上分析了平面和弯曲晶体的反射特性,并针对硬(>50 keV)X 射线的晶体光谱学进行了优化。该晶体装置针对高吞吐量和光谱分辨率进行了优化,以实现光谱应用。我们首次观察到皮秒激光产生等离子体的特征钽 Kα、β 和 Lα、β 线辐射。实现了约 450 的分辨率,远高于可比吸收滤光技术(E/ΔE ≈ 15)。