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- W2002506722 abstract "The absorption of subpicosecond, obliquely incident laser light is studied using a 11/2D particle-in-cell code. Density scale lengths from L/ensuremath{lambda}=0.01 to 2 and laser irradiances between I${ensuremath{lambda}}^{2}$=${10}^{14}$ and ${10}^{18}$ W ${mathrm{cm}}^{mathrm{ensuremath{-}}2}$ ensuremath{mu}${mathrm{m}}^{2}$ are considered. ``Vacuum heating'' [F. Brunel, Phys. Rev. Lett. 59, 52 (1987)] dominates over resonance absorption for scale lengths L/ensuremath{lambda}0.1, and is most efficient when ${mathit{v}}_{mathrm{osc}}$/censuremath{simeq}3.1(L/ensuremath{lambda}${)}^{2}$. Absorbed energy is carried mainly by a ``superhot'' electron population with ${mathit{U}}_{mathrm{hot}}$ensuremath{sim}(I${ensuremath{lambda}}^{2}$${)}^{1/3--1/2}$." @default.
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- W2002506722 date "1992-03-09" @default.
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- W2002506722 title "Collisionless absorption in sharp-edged plasmas" @default.
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- W2002506722 doi "https://doi.org/10.1103/physrevlett.68.1535" @default.
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