首页> 外文期刊>Journal de Physique, IV: Proceedings of International Conference >Hot electron jets from femtosecond heated plasmas at intensities of 10(16)-10(17) W/cm(2)
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Hot electron jets from femtosecond heated plasmas at intensities of 10(16)-10(17) W/cm(2)

机译:飞秒加热等离子体的热电子束,强度为10(16)-10(17)W / cm(2)

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摘要

Solid target experiments carried out on copper targets with both p- and s-polarized 130 fs Ti:Sapphire laser pulses at intensities of 3 x 10(16) W/cm(2) indicate the presence of hot electron jets with electron energies of 80 to over 250 keV and cone angles of the order of 10 degrees at the higher energies with directions dependent on the incident polarization. For comparison, studies on an Argon cluster jet targets with 50 fs duration Ti:Sapphire laser pulses at vacuum intensity of 1017 W/cm(2) indicated no detectable hot electron jet emission with electron energies above 50 keV. A 2D PIC simulation of the p-polarized solid target interaction predicts features similar to those observed experimentally.
机译:用p和s极化的130 fs Ti:蓝宝石激光脉冲在3 x 10(16)W / cm(2)强度下对铜靶进行的固体靶实验表明存在电子能量为80的热电子束到超过250 keV,并且在更高的能量下锥角约为10度,其方向取决于入射极化。为了进行比较,对真空强度为1017 W / cm(2)的持续时间为50 fs的Ti:蓝宝石激光脉冲的氩团簇喷射目标进行的研究表明,在电子能量高于50 keV时,无法检测到热电子喷射。 p极化固体目标相互作用的2D PIC模拟预测的特征与实验观察到的特征相似。

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