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Description
  • Advanced nanostructured thin foils have been used in order to enhance the laser-driven proton acceleration mechanism in TNSA regime. In particular, the presence of a monolayer of polystyrene nanospheres on the target front-side has drastically enhanced the absorption of the incident laser beam, leading to a consequent increase in the maximum proton beam energy and total charge. The experimental measurements have been carried out at the 100 TW laser systems available at the APRI-GIST facility. This is the first experimental demonstration of such advanced target geometry which was previously presented through particle-in-cell numerical simulation. Experimental results and comparison with theory are discussed.
  • Advanced nanostructured thin foils have been used in order to enhance the laser-driven proton acceleration mechanism in TNSA regime. In particular, the presence of a monolayer of polystyrene nanospheres on the target front-side has drastically enhanced the absorption of the incident laser beam, leading to a consequent increase in the maximum proton beam energy and total charge. The experimental measurements have been carried out at the 100 TW laser systems available at the APRI-GIST facility. This is the first experimental demonstration of such advanced target geometry which was previously presented through particle-in-cell numerical simulation. Experimental results and comparison with theory are discussed. (en)
Title
  • Proton acceleration from nanostructured targets by 0.1-1 PW lasers
  • Proton acceleration from nanostructured targets by 0.1-1 PW lasers (en)
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  • Proton acceleration from nanostructured targets by 0.1-1 PW lasers
  • Proton acceleration from nanostructured targets by 0.1-1 PW lasers (en)
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  • RIV/68407700:21340/12:00204862!RIV14-MSM-21340___
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  • I, P(GAP205/11/1165)
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  • 163104
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  • RIV/68407700:21340/12:00204862
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  • laser-induced proton acceleration; femtosecond lasers; TNSA mechanism (en)
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  • [F6D677E2189C]
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  • Stockholm
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  • Mulhouse
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  • 39th EPS Conference on Plasma Physics & 16th International Congress on Plasma
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  • Novotný, Filip
  • Proška, Jan
  • Klimo, Ondřej
  • Limpouch, Jiří
  • Prokůpek, Jan
  • Pšikal, Jan
  • Štolcová, Lucie
  • Choi, I.W.
  • Jeong, T. M.
  • Kim, H. T.
  • Kim, I. J.
  • Lee, S. K.
  • Nam, K. H.
  • Sung, J. H.
  • Yu, T. J.
  • Margarone, D.
  • Korn, G.
  • Mocek, T.
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  • European Physical Society
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  • 978-1-62276-981-0
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  • 21340
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