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Single line-of-sight dual energy backlighter for mix width experiments.

K L Baker1, S G Glendinning1, T M Guymer2

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|November 29, 2014
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Summary

This study introduces a novel diagnostic technique for spatial multiplexing two X-ray radiographs using a thin backlighter target and a nickel picket fence filter. This method enables simultaneous imaging of two distinct X-ray emissions on a single detector.

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Area of Science:

  • Plasma Physics
  • X-ray Diagnostics
  • Materials Science

Background:

  • Spatially multiplexing X-ray radiographs is crucial for advanced diagnostics.
  • Simultaneous imaging of multiple emissions can improve data acquisition efficiency.

Purpose of the Study:

  • To present a novel diagnostic technique for spatially multiplexing two X-ray radiographs onto a single detector.
  • To demonstrate the capability of simultaneous Ni and Zn Heα emission imaging.

Main Methods:

  • Utilized a thin (<2 μm) cosputtered backlighter target to produce Ni and Zn Heα emission.
  • Employed a nickel picket fence filter (500 μm bars/troughs) to spectrally and spatially separate emissions.
  • Simulated radiographic images to analyze filter performance and measure mix width in nickel foam.

Main Results:

  • Successfully demonstrated the principle of spatial multiplexing two X-ray radiographs.
  • Presented initial experimental results of the backlighter spectrum.
  • Simulated images validated the technique's ability to measure mix width in accelerated nickel foam.

Conclusions:

  • The developed technique enables efficient spatial multiplexing of two X-ray radiographs.
  • This method shows promise for advanced diagnostics in materials science and plasma physics.
  • The technique is effective for measuring mix width in accelerated materials.