Abstract

Characteristics of suprathermal ions and neutral particles from a laser-produced tin plasma by use of a colloidal microjet target containing tin dioxide (SnO 2 ) nanoparticles were investigated. Suprathermal ion emissions were reduced by producing a low-density preplasma. Simultaneously, the maximum conversion efficiency of 1.2% at 13.5 nm with a bandwidth of 2% and a solid angle of 2p sr was observed. Neutral particles, however, were not suppressed under the optimum laser-plasma conditions.

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