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Communication: Ionization and Coulomb explosion of xenon clusters by intense, few-cycle laser pulses

机译:交流:氙气团簇的电离和库仑爆炸,产生强烈的,短周期的激光脉冲

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摘要

Intense, ultrashort pulses of 800 nm laser light (12 fs, ~4 optical cycles) of peak intensity 5× 10~(14) W cm~(-2) have been used to irradiate gas-phase Xe_n clusters (n=500-25 000) so as to induce multiple ionization and subsequent Coulomb explosion. Energy distributions of exploding ions are measured in the few-cycle domain that does not allow sufficient time for the cluster to undergo expansion due to Coulombic and hydrodynamic pressures. This results in overall dynamics that appear to be significantly different to those in the many-cycle regime. One manifestation is that the maximum ion energies are measured to be much lower than those obtained when longer pulses of the same intensity are used. Ion yields are cluster-size independent but polarization dependent in that they are significantly larger when the polarization is perpendicular to the detection axis than along it. This unexpected behavior is qualitatively rationalized in terms of a spatially anisotropic shielding effect induced by the electronic charge cloud within the cluster.
机译:已使用峰值强度为5×10〜(14)W cm〜(-2)的800 nm激光的强超短脉冲(12 fs,〜4个光学周期)照射气相Xe_n团簇(n = 500- 25 000),以引起多次电离和随后的库仑爆炸。爆炸离子的能量分布是在少数循环域中测量的,该域由于库仑和流体动力压力而没有足够的时间使簇发生膨胀。这导致整体动力学似乎与多周期过程中的显着不同。一种表现是,最大离子能量被测量为比使用相同强度的较长脉冲时获得的离子能量低得多。离子产量与簇大小无关,但与极化有关,因为当极化垂直于检测轴时,其离子产生量要大得多。根据簇中电子电荷云引起的空间各向异性屏蔽效应,从质量上合理化了这种意外行为。

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