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Multi-messenger dynamic imaging of laser-driven shocks in water using a plasma wakefield accelerator

Abstract Understanding dense matter hydrodynamics is critical for predicting plasma behavior in environments relevant to laser-driven inertial confinement fusion. Traditional diagnostic sources face limitations in brightness, spatiotemporal resolution, and in their ability to detect relevant electro...

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Ngā kaituhi matua: Mario D. Balcazar, Hai-En Tsai, Tobias M. Ostermayr, Paul Campbell, Matthew R. Trantham, Félicie Albert, Qiang Chen, Cary Colgan, Gilliss M. Dyer, Zachary Eisentraut, Eric Esarey, Elizabeth S. Grace, Benjamin Greenwood, Anthony J. Gonsalves, Sahel Hakimi, Robert Jacob, Brendan Kettle, Paul King, Karl Krushelnick, Nuno Lemos, Eva E. Los, Yong Ma, Stuart P. D. Mangles, John Nees, Isabella M. Pagano, Carl B. Schroeder, Raspberry A. Simpson, Anthony V. Vazquez, Jeroen van Tilborg, Cameron G. R. Geddes, Alexander G. R. Thomas, Carolyn C. Kuranz
Hōputu: Artigo
Reo:Inglês
I whakaputaina: Nature Portfolio 2025-12-01
Rangatū:Nature Communications
Urunga tuihono:https://doi.org/10.1038/s41467-025-67224-3
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