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Ultrafast radiographic imaging and tracking: An overview of instruments, methods, data, and applications
Ultrafast radiographic imaging and tracking (U-RadIT) use state-of-the-art ionizing particle
and light sources to experimentally study sub-nanosecond transients or dynamic processes …
and light sources to experimentally study sub-nanosecond transients or dynamic processes …
[HTML][HTML] Invited article: X-ray phase contrast imaging in inertial confinement fusion and high energy density research
DS Montgomery - Review of Scientific Instruments, 2023 - pubs.aip.org
X-ray phase contrast imaging (XPCI) provides enhanced image contrast beyond absorption-
based x-ray imaging alone due to refraction and diffraction from gradients in the object …
based x-ray imaging alone due to refraction and diffraction from gradients in the object …
Phase imaging of irradiated foils at the OMEGA EP facility using phase-step** X-ray Talbot–Lau deflectometry
Diagnosing the evolution of laser-generated high energy density (HED) systems is
fundamental to develop a correct understanding of the behavior of matter under extreme …
fundamental to develop a correct understanding of the behavior of matter under extreme …
TIA: A forward model and analyzer for Talbot interferometry experiments of dense plasmas
Interferometry is one of the most sensitive and successful diagnostic methods for plasmas.
However, owing to the design of most common interferometric systems, the wavelengths of …
However, owing to the design of most common interferometric systems, the wavelengths of …
Proof-of-concept Talbot–Lau x-ray interferometry with a high-intensity, high-repetition-rate, laser-driven K-alpha source
Talbot–Lau x-ray interferometry is a grating-based phase-contrast technique, which enables
measurement of refractive index changes in matter with micrometric spatial resolution. The …
measurement of refractive index changes in matter with micrometric spatial resolution. The …
[HTML][HTML] Current advances on Talbot–Lau x-ray imaging diagnostics for high energy density experiments
Talbot–Lau x-ray interferometry is a refraction-based diagnostic that can map electron
density gradients through phase-contrast methods. The Talbot–Lau x-ray deflectometry …
density gradients through phase-contrast methods. The Talbot–Lau x-ray deflectometry …
[HTML][HTML] Talbot-Lau x-ray deflectometer: Refraction-based HEDP imaging diagnostic
Talbot-Lau x-ray interferometry has been implemented to map electron density gradients in
High Energy Density Physics (HEDP) experiments. X-ray backlighter targets have been …
High Energy Density Physics (HEDP) experiments. X-ray backlighter targets have been …
Single-shot grating-based phase-contrast imaging of a micrometer sample at a laser-driven X-ray backlighter source
B Akstaller, S Schreiner, F Hofmann… - Journal of …, 2021 - iopscience.iop.org
A single-shot x-ray phase-contrast imaging technique with short exposure time allows to
capture sharp images of fast dynamic processes despite low absorption contrast. We …
capture sharp images of fast dynamic processes despite low absorption contrast. We …
[HTML][HTML] Noise reduction for single-shot grating-based phase-contrast imaging at an X-ray backlighter
S Schreiner, B Akstaller, L Dietrich, P Meyer… - Journal of …, 2021 - mdpi.com
X-ray backlighters allow the capture of sharp images of fast dynamic processes due to
extremely short exposure times. Moiré imaging enables simultaneously measuring the …
extremely short exposure times. Moiré imaging enables simultaneously measuring the …
Referenceless, grating-based, single shot X-ray phase contrast imaging with optimized laser-driven K-α sources
With its ability to efficiently probe low-Z materials, X-ray phase imaging methods have
recently raised high interest in multiple fields from biology and medical applications to high …
recently raised high interest in multiple fields from biology and medical applications to high …