Effect of reentrant cone geometry on energy transport in intense laser-plasma interactions

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Abstract

The energy transport in cone-guided low- Z targets has been studied for laser intensities on target of 2.5× 1020 W cm-2. Extreme ultraviolet (XUV) imaging and transverse optical shadowgraphy of the rear surfaces of slab and cone-slab targets show that the cone geometry strongly influences the observed transport patterns. The XUV intensity showed an average spot size of 65±10 μm for slab targets. The cone slabs showed a reduced spot size of 44±10 μm. The shadowgraphy for the aforementioned shots demonstrate the same behavior. The transverse size of the expansion pattern was 357±32 μm for the slabs and reduced to 210±30 μm. A transport model was constructed which showed that the change in transport pattern is due to suppression of refluxing electrons in the material surrounding the cone. © 2009 The American Physical Society.

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Lancaster, K. L., Sherlock, M., Green, J. S., Gregory, C. D., Hakel, P., Akli, K. U., … Norreys, P. A. (2009). Effect of reentrant cone geometry on energy transport in intense laser-plasma interactions. Physical Review E - Statistical, Nonlinear, and Soft Matter Physics, 80(4). https://doi.org/10.1103/PhysRevE.80.045401

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