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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Generation of high-energy protons from the Coulomb explosion of hydrogen clusters by intense femtosecond laser pulses
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Generation of high-energy protons from the Coulomb explosion of hydrogen clusters by intense femtosecond laser pulses

机译:强飞秒激光脉冲从氢簇的库仑爆炸产生高能质子

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The energy distributions of protons emitted from the Coulomb explosion of hydrogen clusters by an intense femtosecond laser have been experimentally obtained. Ten thousand hydrogen clusters were exploded, emitting 8.1 keV protons under laser irradiation of intensity 6x10(16) W/cm(2). The energy distributions are interpreted well by a spherical uniform cluster analytical model. The maximum energy of the emitted protons can be characterized by cluster size and laser intensity. The laser intensity scale for the maximum proton energy, given by a spherical cluster Coulomb-explosion model, is in fairly good agreement with the experimental results obtained at a laser intensity of 10(16)-10(17) W/cm(2) and also when extrapolated with the results of three-dimensional particle simulations at 10(20)-10(21) W/cm(2).
机译:实验上已经获得了通过强飞秒激光从氢簇的库仑爆炸释放出的质子的能量分布。一万个氢簇爆炸,在强度为6x10(16)W / cm(2)的激光辐照下发射了8.1 keV质子。通过球形均匀簇分析模型可以很好地解释能量分布。所发射质子的最大能量可以通过团簇大小和激光强度来表征。球形簇库仑爆炸模型给出的最大质子能量的激光强度尺度与激光强度为10(16)-10(17)W / cm(2)时获得的实验结果相当吻合并且还可以使用10(20)-10(21)W / cm(2)的三维粒子模拟结果进行推断。

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