DOE OSTI · 2567113
Optimizing MeV photon dose generation in laser-solid interactions via stable beam propagation
Abstract
Bremsstrahlung MeV x rays with high doses are essential for radiography of dense objects. Intense, short-pulse laser-driven MeV x-ray sources offer a promising solution, but understanding how the dose scales with laser intensity is crucial for their development. While theory predicts a square root scaling with laser intensity, experimental verification has been hindered by significant shot-to-shot variations, often exacerbated by long preplasma scale lengths from low laser contrast. Here, we demonstrate low shot-to-shot dose variation and confirm the theoretical scaling using high-contrast OMEGA EP laser interactions with millimeter-thick tantalum foils, achieving MeV x-ray doses up to 5.4 rad at 1 m for E photon > 500 keV. Simulations reveal that the unique focal spot of the OMEGA EP laser enables efficient x-ray generation and reduced variability by facilitating deeper laser penetration into dense plasma, even with shorter preplasma scale lengths. Published by the American Physical Society 2025
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Bogale, A. S. (ORCID:0000000306011512), Yin, L. (ORCID:0000000289785320), Palaniyappan, S., Strehlow, J., Luedtke, S. V. (ORCID:0000000316702835), Wong, C. -S. (ORCID:0000000226987208), Stark, D., Gautier, D. C. (ORCID:000000017778311X), Fernandez, J. C., Van Pelt, A. (ORCID:0009000908439943), Mix, L. T. (ORCID:0000000281363457), Twardowski, J., Fitzgarrald, R. (ORCID:0000000316338113), Beg, F. N., Albright, B. J.. 2025-05-19. Optimizing MeV photon dose generation in laser-solid interactions via stable beam propagation. https://doi.org/10.1103/physrevresearch.7.023169
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