JOURNAL ARTICLE

Single-shot Z_eff dense plasma diagnostic through simultaneous refraction and attenuation measurements with a Talbot–Lau x-ray moiré deflectometer

M. P. ValdiviaD. StutmanM. Finkenthal

Year: 2015 Journal:   Applied Optics Vol: 54 (10)Pages: 2577-2577   Publisher: Optica Publishing Group

Abstract

The Talbot-Lau x-ray moiré deflectometer is a powerful plasma diagnostic capable of delivering simultaneous refraction and attenuation information through the accurate detection of x-ray phase shift and intensity. The diagnostic can provide the index of refraction n=1-δ+iβ of an object (dense plasma, for example) placed in the x-ray beam by independently measuring both δ and β, which are directly related to the electron density n(e) and the attenuation coefficient μ, respectively. Since δ and β depend on the effective atomic number Z(eff), a map can be obtained from the ratio between phase and absorption images acquired in a single shot. The Talbot-Lau x-ray moiré deflectometer and its corresponding data acquisition and processing are briefly described to illustrate how the above is achieved; Z(eff) values of test objects within the 4-12 range were obtained experimentally through simultaneous refraction and attenuation measurements. We show that Z(eff) mapping of objects does not require previous knowledge of sample length or shape. The determination of Z(eff) from refraction and attenuation measurements with moiré deflectometry could be of high interest to various domains of high energy density research, such as shocked materials and inertial confinement fusion experiments, as well as material science and nondestructive testing.

Keywords:
Attenuation Optics Refraction Attenuation coefficient Physics Refractive index Moiré pattern Plasma diagnostics Plasma

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Citation History

Topics

Advanced X-ray Imaging Techniques
Physical Sciences →  Physics and Astronomy →  Radiation
Laser-Plasma Interactions and Diagnostics
Physical Sciences →  Physics and Astronomy →  Nuclear and High Energy Physics
X-ray Spectroscopy and Fluorescence Analysis
Physical Sciences →  Physics and Astronomy →  Radiation
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