Bulletin of the American Physical Society
65th Annual Meeting of the APS Division of Plasma Physics
Monday–Friday, October 30–November 3 2023; Denver, Colorado
Session JI01: Lab Astro and Extreme Physics
2:00 PM–5:00 PM,
Tuesday, October 31, 2023
Room: Plaza F
Chair: Ka Ho Yuen, Los Alamos National Laboratory
Abstract: JI01.00002 : Examining astrophysical gas-cloud collapse using an optical depth-scaled, x-ray-irradiated, carbon-foam sphere*
2:30 PM–3:00 PM
Presenter:
Robert VanDervort
(Los Alamos National Laboratory)
Author:
Robert VanDervort
(Los Alamos National Laboratory)
This work describes laboratory experiments to study the radiation-driven implosion of clouds, using x-rays from a laser-irradiated, thin-gold foil as a surrogate star and a carbon-foam sphere as a surrogate cloud. The system’s optical depth was controlled by the foam density. Gold foil and sphere motions were imaged by x-ray radiography. Radiographic images show the formation of an interface between rarefied gold and carbon plasmas, a shock moving into the sphere, and a blunting of the initial sphere’s shape. Measurements show that the shock moved linearly around 64 um/ns into the sphere, and the gold-carbon interface formed by 2 ns at the sphere edge remained stationary. The deformation of the sphere was driven by the incident radiation and not by mechanical pressures applied by gold plasma. The blunting of the sphere was likely due to the geometric reduction of flux near the sphere’s poles. Higher x-ray flux near the sphere’s equator caused high compression and a faster shock, which flattened the sphere. We will discuss the results and implications of our observations.
[1] F. Bertoldi. ’The photoevaporation of interstellar clouds I Radiation Driven Implosion’. In The Astrophysical Journal 346.2 (1989), pp. 735-755.
*This work is funded by the U.S. DOE NNSA Center of Excellence under Cooperative Agreement No. DE-NA0003869, and the NLUF Program, grant No. DE-NA0002719, and through the LLE, University of Rochester by the NNSA/OICF under Cooperative Agreement No. DE-NA0003856
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