Do A, Troussel Ph, Baton S D, Dervieux V, Gontier D, Lecherbourg L, Loupias B, Obst L, Pérez F, Renaudin P, Reverdin Ch, Rubbelynck C, Stemmler Ph, Soullié G
Commissariat à l'Énergie Atomique, DAM-Île de France, BP 12, 91680 Bruyères-le-Châtel, France.
LULI-CNRS, École Polytechnique, CEA, Université Paris-Saclay, F-91128 Palaiseau Cedex, France and UPMC Univ. Paris 06, Sorbonne Universités, Paris, France.
Rev Sci Instrum. 2017 Jan;88(1):013701. doi: 10.1063/1.4973296.
High-resolution, high-sensitivity X-ray imaging is a real challenge in laser plasma diagnostic to attain reliable data in high-energy density plasma experiments. In this context, ultra-high-intensity lasers generate hot and dense plasma but only in a small volume. An experiment has been performed at the LULI2000 laser facility to diagnose such plasma conditions from thermal spectroscopic data. To image the emission zone plasma's Al He, a Fresnel-lens-based X-ray imager has been developed. It features a 846 μm-diameter Fresnel Phase Zone Plate (FPZP) and a Pd/BC multilayer mirror (thickness d = 5.1 nm). This association can be used between 1500 eV and 2100 eV. The FPZP's efficiency was measured on a synchrotron facility (SOLEIL) and its spatial resolution in a laser facility (EQUINOX). The mirror reflectivity was measured on the synchrotron facility BESSY II. With experimental conditions, the system resolution reaches 3.8 ± 0.6 μm with an adequate efficiency in the 1800 eV-1900 eV energy range with a solid angle of 9 × 10 sr. Consequently, a FPZP is an excellent optics setup for high-resolution quasi-monochromatic X-ray imaging and provides a good collection angle. Bragg-Fresnel lenses, based on the principle of FPZP and mirrors, are currently designed for an X-ray imager at the Laser MégaJoule facility.
在激光等离子体诊断中,高分辨率、高灵敏度的X射线成像对于在高能量密度等离子体实验中获取可靠数据而言是一项真正的挑战。在此背景下,超高强度激光仅在小体积内产生热且致密的等离子体。已在LULI2000激光装置上开展了一项实验,旨在从热光谱数据诊断此类等离子体条件。为了对发射区等离子体的Al He进行成像,已研发出一种基于菲涅耳透镜的X射线成像仪。它具有一个直径846μm的菲涅耳相位区板(FPZP)和一个Pd/BC多层镜(厚度d = 5.1nm)。这种组合可在1500eV至2100eV之间使用。FPZP的效率在同步加速器装置(SOLEIL)上进行了测量,其空间分辨率在激光装置(EQUINOX)上进行了测量。镜面反射率在同步加速器装置BESSY II上进行了测量。在实验条件下,该系统分辨率在1800eV - 1900eV能量范围内,立体角为9×10 sr时达到3.8±0.6μm,且效率足够。因此,FPZP是用于高分辨率准单色X射线成像的出色光学装置,并提供了良好的收集角度。基于FPZP和镜子原理的布拉格 - 菲涅耳透镜目前正在为激光兆焦耳装置的X射线成像仪进行设计。