首页> 外文期刊>Journal of Physics, B. Atomic, Molecular and Optical Physics: An Institute of Physics Journal >Strong-field non-sequential double ionization: wavelength dependence of ion momentum distributions for neon and argon
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Strong-field non-sequential double ionization: wavelength dependence of ion momentum distributions for neon and argon

机译:强场非序贯双电离:氖和氩的离子动量分布的波长依赖性

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摘要

Strong-field double ionization of atoms in a non-sequential regime produces longitudinal ion momentum distributions with a characteristic double-peak structure. At 800 nm laser wavelength in Ne2+ the structure is very pronounced with a well-resolved dip at zero momentum, while for Ar2+ the dip is very shallow, possibly indicating different mechanisms in the two atoms. We investigated the source of this difference by measuring longitudinal momentum distributions of Ne2+ and Ar2+ ions at different laser wavelengths (485, 800, 1313 and 2000 nm) and intensities. The shapes of the experimental momentum distributions for the two atoms exhibit strong dependence on laser wavelength: for both the dip becomes more pronounced at longer wavelengths. At 1300 nm the longitudinal momentum spectrum for Ar2+ is similar to that of Ne2+ at 800 nm. On the other hand, the Ne2+ spectrum measured at 485 nm has the same shape as that of Ar2+ at 800 nm. This observation indicates that the difference between Ne and Ar observed at 800 nm should not be attributed solely to differences in relative electron impact ionization and excitation cross-sections of the two atoms. It is, to a larger extent, due to the interplay between the ponderomotive energy of electron and the ionization potentials of the target atom.
机译:在非顺序状态下原子的强场双电离产生具有特征性双峰结构的纵向离子动量分布。在Ne2 +中的800 nm激光波长处,该结构非常明显,并且零动量下解析度很好,而Ar2 +的则非常浅,可能表明两个原子的机理不同。我们通过测量不同激光波长(485、800、1313和2000 nm)和强度下Ne2 +和Ar2 +离子的纵向动量分布来研究这种差异的根源。这两个原子的实验动量分布的形状表现出对激光波长的强烈依赖性:因为在更长的波长下,两个倾角都变得更加明显。在1300 nm处,Ar2 +的纵向动量谱类似于在800 nm处的Ne2 +的动量谱。另一方面,在485 nm处测得的Ne2 +光谱具有与Ar2 +在800 nm处相同的形状。该观察结果表明,在800 nm处观察到的Ne和Ar之间的差异不应仅归因于两个原子的相对电子碰撞电离和激发截面的差异。这在很大程度上是由于电子的动能与目标原子的电离势之间的相互作用。

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