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Geometry- and diffraction-independent ionization probabilities in intense laser fields: Probing atomic ionization mechanisms with effective intensity matching

机译:强激光场中与几何和衍射无关的电离概率:通过有效强度匹配来探索原子电离机理

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摘要

We report an experimental technique for the comparison of ionization processes in ultrafast laser pulses irrespective of pulse ellipticity. Multiple ionization of xenon by 50 fs 790 nm, linearly and circularly polarized laser pulses is observed over the intensity range 10 TW/cm(2) to 10 PW/cm(2) using effective intensity matching (EIM), which is coupled with intensity selective scanning (ISS) to recover the geometry-independent probability of ionization. Such measurements, made possible by quantifying diffraction effects in the laser focus, are compared directly to theoretical predictions of multiphoton, tunnel and field ionization, and a remarkable agreement demonstrated. EIM-ISS allows the straightforward quantification of the probability of recollision ionization in a linearly polarized laser pulse. Furthermore, the probability of ionization is discussed in terms of the Keldysh adiabaticity parameter gamma, and the influence of the precursor ionic states present in recollision ionization is observed.
机译:我们报告了一种实验技术,用于比较超快激光脉冲中的电离过程,而与脉冲椭圆率无关。使用有效强度匹配(EIM),在强度从10 TW / cm(2)到10 PW / cm(2)的强度范围内,观察到氙在50 fs 790 nm,线性和圆偏振激光脉冲下的多次电离选择性扫描(ISS)以恢复与几何形状无关的电离概率。通过量化激光聚焦中的衍射效应,使这种测量成为可能,将这些测量结果与多光子,隧道和场电离的理论预测直接进行了比较,并证明了惊人的一致性。 EIM-ISS可以直接量化线性偏振激光脉冲中再碰撞电离的概率。此外,根据Keldysh绝热参数γ讨论了电离的可能性,并观察了碰撞电离中存在的前驱体离子态的影响。

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