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The Review of Scientific Instruments|November 5, 2013
Note: Characterization of a high-photon-energy X-ray imagerM Storm, B Eichman, Z Zhong, et al.Optics Express|June 14, 2025
Referenceless, grating-based, single shot X-ray phase contrast imaging with optimized laser-driven K-α sourcesV Bouffetier, G Pérez-Callejo, D Stutman, et al.The Review of Scientific Instruments|December 3, 2016
Talbot-Lau x-ray deflectometer electron density diagnostic for laser and pulsed power high energy density plasma experiments (invited)M P Valdivia, D Stutman, C Stoeckl, et al.The Review of Scientific Instruments|December 3, 2008
A high-resolution coherent transition radiation diagnostic for laser-produced electron transport studies (invited)M Storm, I A Begishev, R J Brown, et al.Physical Review Letters|February 1, 2020
Evolution of the Electron Distribution Function in the Presence of Inverse Bremsstrahlung Heating and Collisional IonizationA L Milder, H P Le, M Sherlock, et al.Optics Express|July 21, 2023
Final amplifier of an ultra-intense all-OPCPA system with 13-J output signal energy and 41% pump-to-signal conversion efficiencyI A Begishev, C Dorrer, S-W Bahk, et al.The Review of Scientific Instruments|December 3, 2022
Current advances on Talbot-Lau x-ray imaging diagnostics for high energy density experiments (invited)M P Valdivia, G Perez-Callejo, V Bouffetier, et al.Physical Review Letters|April 3, 2012
Time-resolved measurements of hot-electron equilibration dynamics in high-intensity laser interactions with thin-foil solid targetsP M Nilson, J R Davies, W Theobald, et al.The Review of Scientific Instruments|November 8, 2018
X-ray backlighter requirements for refraction-based electron density diagnostics through Talbot-Lau deflectometryM P Valdivia, F Veloso, D Stutman, et al.The Review of Scientific Instruments|July 10, 2021
Talbot-Lau x-ray deflectometer: Refraction-based HEDP imaging diagnosticM P Valdivia, D Stutman, C Stoeckl, et al.Pageof 4