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首页> 外文期刊>Physical Review, A. Atomic, molecular, and optical physics >Energy distributions of ions emitted from argon clusters Coulomb-exploded by intense femtosecond laser pulses
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Energy distributions of ions emitted from argon clusters Coulomb-exploded by intense femtosecond laser pulses

机译:飞秒激光脉冲使库仑爆炸的氩团簇发出的离子的能量分布

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Energy distributions of ions emitted from argon clusters (up to 12 800 atoms/cluster) Coulomb-exploded with an intense femtosecond laser have been experimentally studied. Under the laser intensity of 2x10(16) W/cm(2), the ions of >15 keV are anisotropically emitted, while those lower than 15 keV tend to be isotropic. The argon ions of charge state up to Ar14+ were generated, and their high charge state is more than expected by the barrier suppression ionization model. The yield and maximum energy of Ar8+-Ar14+ ions depend on laser polarization direction, while those of Ar+-Ar7+ are much less sensitive to the laser polarization. The present results suggests that high-charge-state and anisotropically emitted ions are produced by impact ionization of electrons that are produced by optical field ionization with the intense laser.
机译:实验研究了用强飞秒激光从氩团簇(高达12 800个原子/团簇)以库仑爆炸产生的离子的能量分布。在2x10(16)W / cm(2)的激光强度下,各向异性发射> 15 keV的离子,而低于15 keV的离子则趋于各向同性。生成了高达Ar14 +的电荷态的氩离子,其高电荷态超出了势垒抑制电离模型的预期。 Ar8 + -Ar14 +离子的产率和最大能量取决于激光偏振方向,而Ar + -Ar7 +离子的产率和最大能量对激光偏振的敏感性要低得多。目前的结果表明,高电荷态和各向异性发射的离子是通过电子的碰撞电离而产生的,而电子是通过强激光的光场电离而产生的。

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