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首页> 外文期刊>Physical review letters >Photon Momentum Sharing between an Electron and an Ion in Photoionization: From One-Photon (Photoelectric Effect) to Multiphoton Absorption
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Photon Momentum Sharing between an Electron and an Ion in Photoionization: From One-Photon (Photoelectric Effect) to Multiphoton Absorption

机译:光电离中电子与离子之间的光子动量共享:从单光子(光电效应)到多光子吸收

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摘要

We investigate photon-momentum sharing between an electron and an ion following different photoionization regimes. We find very different partitioning of the photon momentum in one-photon ionization (the photoelectric effect) as compared to multiphoton processes. In the photoelectric effect, the electron acquires a momentum that is much greater than the single photon momentum hω/c [up to (8/5) hω/c] whereas in the strong-field ionization regime, the photoelectron only acquires the momentum corresponding to the photons absorbed above the field-free ionization threshold plus a momentum corresponding to a fraction (3/10) of the ionization potential I_p. In both cases, due to the smallness of the electron-ion mass ratio, the ion takes nearly the entire momentum of all absorbed N photons (via the electron-ion center of mass). Additionally, the ion takes, as a recoil, the photoelectron momentum resulting from mutual electron-ion interaction in the electromagnetic field. Consequently, the momentum partitioning of the photofragments is very different in both regimes. This suggests that there is a rich, unexplored physics to be studied between these two limits which can be generated with current ultrafast laser technology.
机译:我们研究了遵循不同光电离机制的电子和离子之间的光子动量共享。我们发现与多光子过程相比,单光子电离中的光子动量分配(光电效应)非常不同。在光电效应中,电子获得的动量远大于单个光子动量hω/ c [高达(8/5)hω/ c],而在强场电离状态下,光电子仅获得对应的动量大于在无场电离阈值之上吸收的光子加上对应于电离电势I_p的一部分(3/10)的动量。在这两种情况下,由于电子离子质量比很小,离子几乎吸收了所有吸收的N个光子的全部动量(通过电子离子质量中心)。另外,离子将电磁场中相互电子离子相互作用产生的光电子动量作为反冲力。因此,在两种情况下,光碎片的动量分配都非常不同。这表明在这两个极限之间有待研究的丰富的,尚未探索的物理学,可以通过当前的超快激光技术来产生。

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