Strong-field photoionization and the absolute phase of few-cycle laser pulses

G. Paulus
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Abstract

We present the first experimental evidence for an effect of the absolute phase. Atoms are ionized by a short laser pulse and the electrons leaving the ion core are registered with two detectors facing each other on opposite sides of the laser beam. Thus, each laser pulse can be characterized by the number of electrons emitted to the left and the right. Accordingly, the laser shots are recorded in a contingency map. Due to the absolute phase, a laser shot that produces a lot of electrons flying to the right has a high probability to produce only a few flying to the left. This anticorrelation becomes visible as a structure perpendicular to the diagonal.
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强场光电离与少周期激光脉冲的绝对相位
我们提出了绝对相位效应的第一个实验证据。原子被短激光脉冲电离,离开离子核的电子被激光束两侧相对的两个探测器记录下来。因此,每个激光脉冲可以通过向左侧和右侧发射的电子数量来表征。因此,激光射击被记录在应急地图上。由于绝对相位的存在,产生大量电子向右飞的激光很有可能只产生少量电子向左飞。这种反相关性作为垂直于对角线的结构变得可见。
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