Author:
Brost G. A.,Bohn C. L.,Crawford M. L.,Mullins B. W.
Abstract
AbstractThe three-dimensional hydrodynamics of laser-induced, steady state vaporization of aluminum (2024) in vacuim was investigated with the aid of both a hydrodynamic computer code and a Mach-Zender interferometer. Provided the laser beam is sufficiently intense, a vapor plasma forms, resulting in a sustained region of high pressure near the target. The pressure is distributed asymmetrically over the footprint in the case of oblique incidence.
Publisher
Springer Science and Business Media LLC
Reference8 articles.
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2. 4. Bohn C.L. and Crawford M.L. , J. Appl. Phys. (accepted for publication).
3. High‐intensity laser‐matter coupling in a vacuum
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