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首页> 外文期刊>The Journal of Chemical Physics >Fragmentation dynamics of methane by few-cycle femtosecond laser pulses
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Fragmentation dynamics of methane by few-cycle femtosecond laser pulses

机译:短周期飞秒激光脉冲对甲烷的裂解动力学

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The fragmentation pattern of CH4 was experimentally studied at an intensity of approximately 10(14) W/cm(2) with laser durations varying from 8 to 110 fs. When the laser duration was 8 fs, only the primarily fragmental CH3+ ion was observed in addition to the parent CH4+ ion. When the laser duration was 30 fs, small fragmental CH2+ and H+ ions appeared. When the laser duration was 110 fs, some doubly charged ions were also observed in addition to the abundant singly charged ions. The large mass spectra difference demonstrated that the pulse duration had a strong effect on the fragmentation of the parent ion produced in the single ionization. The effect of laser intensity on the fragmentation of CH4+ was also studied for few-cycle femtosecond laser pulses. The results demonstrated that the first-return recollision between the rescattered electron and the parent ion played a significant role in the fragmentation dynamics of the parent ion. Depending on the ion-electron impact energy, the recollision excited the parent ion to a dissociated state or doubly charged state. The experimentally observed singly charged fragmental ions resulted from the recollision-induced dissociation of CH4+ or the Coulomb explosion of CH42+. (c) 2007 American Institute of Physics.
机译:CH4的碎片模式是在实验中以大约10(14)W / cm(2)的强度进行实验研究的,激光持续时间从8到110 fs不等。当激光持续时间为8 fs时,除母体CH4 +离子外,仅观察到主要为碎片的CH3 +离子。当激光持续时间为30 fs时,会出现小的碎片CH2 +和H +离子。当激光持续时间为110 fs时,除大量单电荷离子外,还观察到一些双电荷离子。较大的质谱差异表明,脉冲持续时间对单次电离中产生的母体离子的裂解有很强的影响。还针对几个周期的飞秒激光脉冲研究了激光强度对CH4 +断裂的影响。结果表明,散射电子与母离子之间的首次返回碰撞在母离子的碎片动力学中起着重要作用。取决于离子电子的碰撞能量,再碰撞将母离子激发到离解态或双电荷态。实验观察到的单电荷碎片离子是由碰撞引起的CH4 +离解或CH42 +的库仑爆炸所致。 (c)2007年美国物理研究所。

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