Literature DB >> 28147634

High-resolution quasi-monochromatic X-ray imaging using a Fresnel phase zone plate and a multilayer mirror.

A Do1, Ph Troussel1, S D Baton2, V Dervieux1, D Gontier1, L Lecherbourg1, B Loupias1, L Obst2, F Pérez2, P Renaudin1, Ch Reverdin1, C Rubbelynck1, Ph Stemmler1, G Soullié1.   

Abstract

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 Heβ, a Fresnel-lens-based X-ray imager has been developed. It features a 846 μm-diameter Fresnel Phase Zone Plate (FPZP) and a Pd/B4C 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 × 10-6 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.

Year:  2017        PMID: 28147634     DOI: 10.1063/1.4973296

Source DB:  PubMed          Journal:  Rev Sci Instrum        ISSN: 0034-6748            Impact factor:   1.523


  1 in total

1.  Advanced high resolution x-ray diagnostic for HEDP experiments.

Authors:  A Y Faenov; T A Pikuz; P Mabey; B Albertazzi; Th Michel; G Rigon; S A Pikuz; A Buzmakov; S Makarov; N Ozaki; T Matsuoka; K Katagiri; K Miyanishi; K Takahashi; K A Tanaka; Y Inubushi; T Togashi; T Yabuuchi; M Yabashi; A Casner; R Kodama; M Koenig
Journal:  Sci Rep       Date:  2018-11-06       Impact factor: 4.379

  1 in total

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