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The influence of target thickness on characteristics of a forward-emitted proton beam produced by an ultrashort laser pulse

机译:目标厚度对超短激光脉冲产生的前向质子束特性的影响

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Summary form only given. Fast protons, produced by the interaction of an ultrashort (/spl les/1 ps) laser pulse (USP) with a thin foil target, are currently the subject of an intensive study. To make this prospect feasible, the proton production efficiency and proton beam characteristics must be considerably enhanced. The possible way to attain this goal is optimization of the target. We have found that, for maximizing the energies of forward-emitted protons and for minimizing the proton energy spread, the target thickness must be properly selected. It should be smaller than the hot electron range in the target but greater than the characteristic path length of the electron heat wave generated by the prepulse and the leading edge of a laser pulse. If the target thickness is smaller than the heat wave path length, both the maximum and the mean proton energies can be a decreasing function of laser energy.
机译:仅提供摘要表格。由超短(/ spl les / 1 ps)激光脉冲(USP)与薄箔靶相互作用产生的快质子,目前是一项深入研究的课题。为了使这种前景可行,必须大大提高质子的生产效率和质子束特性。达到此目标的可能方法是优化目标。我们已经发现,为了使正向发射的质子的能量最大化并且为了使质子的能量扩散最小化,必须适当地选择目标厚度。它应小于目标中的热电子范围,但应大于由预脉冲和激光脉冲的前沿产生的电子热波的特征路径长度。如果目标厚度小于热波路径长度,则最大质子能量和平均质子能量都可能是激光能量的递减函数。

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