Literature DB >> 27910471

The National Ignition Facility modular Kirkpatrick-Baez microscope.

L A Pickworth1, J Ayers1, P Bell1, N F Brejnholt1, J G Buscho1, D Bradley1, T Decker1, S Hau-Riege1, J Kilkenny2, T McCarville1, T Pardini1, J Vogel1, C Walton1.   

Abstract

Current two-dimensional X-ray imaging at the National Ignition Facility (NIF) uses time resolved pinhole cameras with ∼10-25 μm pinholes. This method has limitations in the smallest resolvable features that can be imaged with reasonable photon statistics for inertial confinement fusion (ICF) applications. ICF sources have a broadband self-emission spectrum that causes the pinhole images obtained, through thin foil filters, to contain a similarly broadband spectrum complicating the interpretation of structure in the source. In order to study phenomena on the scale of ∼5 μm, such as dopant mix in the ICF capsule, a narrow energy band, higher spatial resolution microscope system with improved signal/noise has been developed using X-ray optics. Utilizing grazing incidence mirrors in a Kirkpatrick-Baez microscope (KBM) configuration [P. Kirkpatrick and A. V. Baez, J. Opt. Soc. Am. 38, 766-774 (1948)], an X-ray microscope has been designed and fielded on NIF with four imaging channels. The KBM has ∼12 × magnification, <8 μm resolution, and higher throughput in comparison to similar pinhole systems. The first KBM mirrors are coated with a multilayer mirror to allow a "narrow band" energy response at 10.2 keV with ΔE ∼ 3 keV. By adjusting the mirror coating only, the energy response can be matched to the future experimental requirements. Several mirror packs have been commissioned and are interchangeable in the diagnostic snout.

Entities:  

Year:  2016        PMID: 27910471     DOI: 10.1063/1.4960417

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


  2 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

2.  Quantitative observation of monochromatic X-rays emitted from implosion hotspot in high spatial resolution in inertial confinement fusion.

Authors:  Kuan Ren; Junfeng Wu; Jianjun Dong; Yaran Li; Tianxuan Huang; Hang Zhao; Yaoyuan Liu; Zhurong Cao; Jiyan Zhang; Baozhong Mu; Ji Yan; Wei Jiang; Yudong Pu; Yulong Li; Xiaoshi Peng; Tao Xu; Jiamin Yang; Ke Lan; Yongkun Ding; Shaoen Jiang; Feng Wang
Journal:  Sci Rep       Date:  2021-07-14       Impact factor: 4.379

  2 in total

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