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High Energy Proton Ejection from Hydrocarbon Molecules Driven by Highly Efficient Field Ionization

机译:由高效场电离驱动的烃分子的高能量质子喷射

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We report on the ejection of protons with surprisingly high kinetic energies up to 60 eV from a series of polyatomic hydrocarbon molecules exposed to Titanium-Sapphire laser pulses with moderate laser peak intensities of a few 1014 W/cm~2. Using multi-particle coincidence imaging we are able to decompose the observed proton energy spectra into the contributions of individual fragmentation channels. It is shown that the molecules can completely fragment into bare atomic ions already at relatively low peak intensities, and that the protons are ejected in a concerted Coulomb explosion from unexpectedly high charge states. We propose that a thus far undescribed process, namely that enhanced ionization (EI) taking place at all C-H bonds in parallel, is responsible for the high charge states and high proton energies. The proposition is successfully tested by using (stretched) few-cycle pulses with a bandwidth limited duration as short as 4.3 fs, for which the C-H nuclear motion is too slow to reach the critical internuclear distance for EI.
机译:我们报告了具有令人惊讶的高动力学的质子的喷射,从一系列暴露于钛 - 蓝宝石激光脉冲的一系列多元素烃分子,中等激光峰值强度为1014W / cm〜2。使用多粒子重合成像,我们能够将观察到的质子能谱分解成各个碎片通道的贡献。结果表明,该分子可以将已经处于相对低的峰值强度的裸原子离子中的裸原子离子,并且质子在从出乎意料的高电荷状态下以齐全的库仑爆炸喷射。我们提出了迄今为止的未描述的过程,即在所有C-H键处的增强的电离(EI)并行地进行,负责高电荷状态和高质量的能量。通过使用(拉伸)几循环脉冲以带宽限制为4.3 fs的带宽限制,C-H核动作太慢而成功地测试了该命题,以达到EI的关键核心距离。

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