Efficient laser-driven proton and bremsstrahlung generation from cluster-assembled foam targets

Author:

Prencipe IreneORCID,Metzkes-Ng JosefineORCID,Pazzaglia AndreaORCID,Bernert Constantin,Dellasega DavidORCID,Fedeli LucaORCID,Formenti AriannaORCID,Garten MarcoORCID,Kluge ThomasORCID,Kraft StephanORCID,Garcia Alejandro LasoORCID,Maffini AlessandroORCID,Obst-Huebl LieselotteORCID,Rehwald MartinORCID,Sobiella Manfred,Zeil KarlORCID,Schramm UlrichORCID,Cowan Thomas E.ORCID,Passoni MatteoORCID

Abstract

Abstract The interaction between intense 30 fs laser pulses and foam-coated 1.5 μm-thick Al foils in the relativistic regime (up to 5 × 1020 W cm−2) is studied to optimize the laser energy conversion into laser-accelerated protons. A significant enhancement is observed for foam targets in terms of proton cut-off energy (18.5 MeV) and number of protons above 4.7 MeV (4 × 109 protons/shot) with respect to uncoated foils (9.5 MeV, 1 × 109 protons/shot), together with a sixfold increase in the bremsstrahlung yield. This enhancement is attributed to increased laser absorption and electron generation in the foam meso- and nanostructure.

Funder

H2020 European Research Council

Laserlab-Europe

Publisher

IOP Publishing

Subject

General Physics and Astronomy

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