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Ion acceleration with ultrafast lasers

Busch, S. (author)
Schnurer, M. (author)
Kalashnikov, M. (author)
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Schonnagel, H. (author)
Stiel, H. (author)
Nickles, P. V. (author)
Sandner, W. (author)
Ter-Avetisyan, S. (author)
Karpov, V. (author)
Vogt, Ulrich (author)
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AIP Publishing, 2003
2003
English.
In: Applied Physics Letters. - : AIP Publishing. - 0003-6951 .- 1077-3118. ; 82:19, s. 3354-3356
  • Journal article (peer-reviewed)
Abstract Subject headings
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  • Hot-electron confinement can build up fields capable of accelerating ions up to MeV energies when an ultrashort 35-fs laser pulse at similar to2x10(18) W/cm(2) interacts with a small spherical target. Singly charged ions with different masses have similar energies. A simple phenomenological model describes how ultrashort and less-energy-consumptive pulses drive ions to MeV energies. The energetic and spatial-emission characteristics of protons, deuterons and oxygen ions released from water and heavy-water droplets of similar to15 mum in size was determined for this interaction scenario.

Keyword

short-pulse-laser
plasma interactions
proton generation
solid targets
thin foils
electron
photon

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ref (subject category)
art (subject category)

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