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Multicomponent control via shaped, strong laser fields mass spectrometry

机译:通过成形的强激光场质谱进行多组分控制

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The fragmentation processes of polyatomic molecules induced by an intense laser field exhibit sensitive dependence on the laser characteristics such as intensity, pulse duration, wavelength, and shape of the temporal pulse envelope. Adaptive laser pulse shaping can control the fragmentation of methyl/methoxy groups in dimethyl methylphosphonate ( DMMP), a simulant for nerve agent sarin. The exploitation of the sensitivity of molecular fragmentation to laser pulse shapes represents a new way to discriminate molecular identity. Here we have shown manipulation of branching ratio M-(OCH3)(+)/M-(CH3)(+)/M-2(CH3)(+)/ M-(CH3)(+) and M-(OCH3)(+)/ M-2(CH3)(+) fragment ion ratios for DMMP in the presence of complex background in the extraction region of a TOF spectrometer using tailored femtosecond laser pulses. We suggest that the use of adaptive femtosecond laser pulse shaping coupled to TOF mass spectrometry is an accurate way to identify complex airborne organophosphate molecules similar to nerve agents.
机译:强激光场诱导的多原子分子的碎裂过程表现出对激光特性(例如强度,脉​​冲持续时间,波长和时间脉冲包络形状)的敏感依赖性。自适应激光脉冲整形可以控制神经磷酸酶沙林蛋白的模拟物甲基膦酸二甲酯(DMMP)中甲基/甲氧基的断裂。利用分子碎片对激光脉冲形状的敏感性代表了一种鉴别分子身份的新方法。在这里我们显示了对分支比M-(OCH3)(+)/ M-(CH3)(+)/ M-2(CH3)(+)/ M-(CH3)(+)和M-(OCH3)的操纵使用定制的飞秒激光脉冲在TOF光谱仪的提取区域中存在复杂背景的情况下,DMMP的(+)/ M-2(CH3)(+)碎片离子比率。我们建议使用自适应飞秒激光脉冲成形与TOF质谱联用是一种识别类似于神经毒剂的复杂机载有机磷酸酯分子的准确方法。

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