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Elucidating isotopic effects in intense ultrafast laser-driven D2H+ fragmentation

机译:阐明强烈的超快激光驱动的D2H +碎裂中的同位素效应

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摘要

The triatomic hydrogen molecular ion is instrumental as a benchmark toward understanding the strong-field dynamics of polyatomic molecules. Using a crossed-beams coincidence three-dimensional momentum imaging method, we demonstrate clear isotopic effects in the fragmentation of D[subscript 2]H[superscript +] induced by 7 fs (40 fs), 790 nm laser pulses at an intensity of 10[superscript 16] W/cm² (5×10[superscript 15] W/cm²). Our experiment uniquely separates all fragmentation channels and provides kinematically complete information for the nuclear fragments. For example, we show that for dissociative ionization of D[subscript 2]H[superscript +] there is a large difference in branching ratios of the two-body channels, namely, H[superscript +]+D[superscript +][subscript 2] dominates D[superscript +]+HD[superscript +], whereas there is minimal difference in branching ratios between the dissociation channels H[superscript +]+D[subscript 2] and D[superscript +]+HD.
机译:三原子氢分子离子有助于理解多原子分子的强场动力学。使用交叉光束重合三维动量成像方法,我们证明了在强度为10的7 fs(40 fs),790 nm激光脉冲诱导的D [下标2] H [上标+]碎裂中的清晰同位素效应[上标16] W / cm 2(5×10 [上标15] W / cm 2)。我们的实验独特地分离了所有碎片通道,并为核碎片提供了运动学上完整的信息。例如,我们表明,对于D [下标2] H [上标+]的解离电离,两体通道的分支比存在很大差异,即H [上标+] + D [上标+] [下标2]主导了D [上标+] + HD [上标+],而解离通道H [上标+] + D [下标2]和D [上标+] + HD之间的分支比差异最小。

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