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Kinetic energy distribution of multiply charged ions in Coulomb explosion of Xe clusters

机译:Xe团簇库仑爆炸中多电荷离子的动能分布

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We report on the calculations of kinetic energy distribution (KED) functions of multiply charged, high-energy ions in Coulomb explosion (CE) of an assembly of elemental Xe_n clusters (average size n 200-2171) driven by ultra-intense, near-infrared, Gaussian laser fields (peak intensities 10 ~(15)- 4 10~(16) W cm~(-2), pulse lengths 65-230 fs). In this cluster size and pulse parameter domain, outer ionization is incompletevertical, incompletenonvertical, or completenonvertical, with CE occurring in the presence of nanoplasma electrons. The KEDs were obtained from double averaging of single-trajectory molecular dynamics simulation ion kinetic energies. The KEDs were doubly averaged over a log-normal cluster size distribution and over the laser intensity distribution of a spatial Gaussian beam, which constitutes either a two-dimensional (2D) or a three-dimensional (3D) profile, with the 3D profile (when the cluster beam radius is larger than the Rayleigh length) usually being experimentally realized. The general features of the doubly averaged KEDs manifest the smearing out of the structure corresponding to the distribution of ion charges, a marked increase of the KEDs at very low energies due to the contribution from the persistent nanoplasma, a distortion of the KEDs and of the average energies toward lower energy values, and the appearance of long low-intensity high-energy tails caused by the admixture of contributions from large clusters by size averaging. The doubly averaged simulation results account reasonably well (within 30) for the experimental data for the cluster-size dependence of the CE energetics and for its dependence on the laser pulse parameters, as well as for the anisotropy in the angular distribution of the energies of the Xe~q ions. Possible applications of this computational study include a control of the ion kinetic energies by the choice of the laser intensity profile (2D3D) in the laser-cluster interaction volume.
机译:我们报告了由超强,近场驱动的元素Xe_n团簇(平均尺寸n 200-2171)的库仑爆炸(CE)组装中库仑爆炸(CE)中多电荷,高能离子的动能分布(KED)函数的计算结果。红外高斯激光场(峰值强度10〜(15)-4 10〜(16)W cm〜(-2),脉冲长度65-230 fs)。在该簇尺寸和脉冲参数域中,外部电离是不完全垂直的,不完全非垂直的或完全非垂直的,CE在纳米等离子体电子的存在下发生。 KEDs是从单轨迹分子动力学模拟离子动能的两次平均获得的。在对数正态簇大小分布和空间高斯光束的激光强度分布上对KED进行两次平均,该空间高斯光束构成二维(2D)或三维(3D)轮廓,其中3D轮廓(通常是通过实验来实现的(当簇束半径大于瑞利长度时)。双倍平均KED的一般特征表现为从结构上拖出了与离子电荷分布相对应的污迹,由于持久的纳米等离子体的贡献,KED的变形以及KED的变形,在非常低的能量下KED显着增加。平均能量朝着较低的能量值方向移动,并且出现了长的低强度高能量尾部,这些尾部是由大型团簇的尺寸平均混合导致的。双平均模拟结果很好地说明了CE能量学的簇大小依赖性及其对激光脉冲参数的依赖性以及各向异性能量的角度分布的实验数据(在30内)。 Xe〜q离子。该计算研究的可能应用包括通过选择激光-分子相互作用体积中的激光强度曲线(2D3D)来控制离子动能。

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