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Toward an integrated platform or characterizing laser-driven, isochorically heated plasmas with 1 mu m spatial resolution

APPLIED OPTICS(2022)

Cited 4|Views51
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Abstract
Warm dense matter is a region of phase space that is of high interest to multiple scientific communities ranging from astrophysics to inertial confinement fusion. Further understanding of the conditions and properties of this complex state of matter necessitates experimental benchmarking of the current theoretical models. We discuss the development of an x-ray radiography platform designed to measure warm dense matter transport properties at large laser facilities such as the OMEGA Laser Facility. Our platform, Fresnel diffractive radiography, allows for high spatial resolution imaging of isochorically heated targets, resulting in notable diffractive effects at s harp density gradients that are influenced by transport properties such as thermal conductivity. We discuss initial results, highlighting the capabilities of the platform in measuring diffractive features with micrometer-level spatial resolution. (C) 2022 Optica Publishing Group
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Key words
plasmas,resolution,laser-driven,isochorically-heated
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