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J Honrubia

Showing results (1-10 of 11) with videos related to

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Physical Review. E, Statistical, Nonlinear, and Soft Matter Physics|January 15, 2011
Divergence of laser-driven relativistic electron beamsA Debayle, J J Honrubia, E d'Humières, et al.
Scientific Reports|October 7, 2020
Generation of megatesla magnetic fields by intense-laser-driven microtube implosionsM Murakami, J J Honrubia, K Weichman, et al.
Physical Review. E|May 16, 2026
Implosion of cone-in-shell targets for direct-drive fast ignitionA Mateo, J J Honrubia, D A Callahan, et al.
Optics Express|May 14, 2021
Role of relativistic laser intensity on isochoric heating of metal wire targetsA S Martynenko, S A Pikuz, L Antonelli, et al.
Scientific Reports|April 28, 2022
Super-strong magnetic field-dominated ion beam dynamics in focusing plasma devicesA Morace, Y Abe, J J Honrubia, et al.
Philosophical Transactions. Series A, Mathematical, Physical, and Engineering Sciences|December 7, 2020
Fast electron transport dynamics and energy deposition in magnetized, imploded cylindrical plasmaD Kawahito, M Bailly-Grandvaux, M Dozières, et al.
Physical Review Letters|February 2, 2013
Relativistic high-current electron-beam stopping-power characterization in solids and plasmas: collisional versus resistive effectsB Vauzour, J J Santos, A Debayle, et al.
Physical Review. E|October 21, 2022
Cylindrical implosion platform for the study of highly magnetized plasmas at Laser MegaJouleG Pérez-Callejo, C Vlachos, C A Walsh, et al.
Nature Communications|January 11, 2018
Guiding of relativistic electron beams in dense matter by laser-driven magnetostatic fieldsM Bailly-Grandvaux, J J Santos, C Bellei, et al.
Physical Review Letters|March 21, 2015
Enhanced relativistic-electron-beam energy loss in warm dense aluminumX Vaisseau, A Debayle, J J Honrubia, et al.
Pageof 2

Showing results (1-10 of 11) with videos related to

Sort By:
Pageof 2
Physical Review. E, Statistical, Nonlinear, and Soft Matter Physics|January 15, 2011
Divergence of laser-driven relativistic electron beamsA Debayle, J J Honrubia, E d'Humières, et al.
Scientific Reports|October 7, 2020
Generation of megatesla magnetic fields by intense-laser-driven microtube implosionsM Murakami, J J Honrubia, K Weichman, et al.
Physical Review. E|May 16, 2026
Implosion of cone-in-shell targets for direct-drive fast ignitionA Mateo, J J Honrubia, D A Callahan, et al.
Optics Express|May 14, 2021
Role of relativistic laser intensity on isochoric heating of metal wire targetsA S Martynenko, S A Pikuz, L Antonelli, et al.
Scientific Reports|April 28, 2022
Super-strong magnetic field-dominated ion beam dynamics in focusing plasma devicesA Morace, Y Abe, J J Honrubia, et al.
Philosophical Transactions. Series A, Mathematical, Physical, and Engineering Sciences|December 7, 2020
Fast electron transport dynamics and energy deposition in magnetized, imploded cylindrical plasmaD Kawahito, M Bailly-Grandvaux, M Dozières, et al.
Physical Review Letters|February 2, 2013
Relativistic high-current electron-beam stopping-power characterization in solids and plasmas: collisional versus resistive effectsB Vauzour, J J Santos, A Debayle, et al.
Physical Review. E|October 21, 2022
Cylindrical implosion platform for the study of highly magnetized plasmas at Laser MegaJouleG Pérez-Callejo, C Vlachos, C A Walsh, et al.
Nature Communications|January 11, 2018
Guiding of relativistic electron beams in dense matter by laser-driven magnetostatic fieldsM Bailly-Grandvaux, J J Santos, C Bellei, et al.
Physical Review Letters|March 21, 2015
Enhanced relativistic-electron-beam energy loss in warm dense aluminumX Vaisseau, A Debayle, J J Honrubia, et al.
Pageof 2