Femtosecond laser meets field emission tip - a sensor for the carrier envelope phase

P. Hommelhoff, C. Kealhofer, M. Kasevich
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引用次数: 9

Abstract

We investigate the possibility of a simple standalone sensor for the carrier envelope phase of ultrashort laser pulses. We focus the laser beam onto a field emission tip and observe electron emission in the optical field emission regime. In this regime the emission is quasi-static and highly non-linear in the laser electric field. We observe both experimentally and numerically that for three cycle pulses the modulation of the emission current due to the carrier envelope phase is below 0.1 % and thus too small to serve as a means to self-reference the laser. However, for shorter pulses our simulation yields a steep increase in modulation depth. We also show measurements of interferometric autocorrelation traces with the tip as non-linear detector and compare these results to two different theoretical models, thereby backing the choice of our numerical models
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飞秒激光遇到场发射尖端——载波包络相位传感器
我们研究了一种用于超短激光脉冲载波包络相位的简单独立传感器的可能性。我们将激光束聚焦到一个场发射尖端,并在光场发射区观察电子发射。在这种情况下,发射是准静态的,在激光电场中是高度非线性的。我们在实验和数值上都观察到,对于三周期脉冲,由于载波包络相位引起的发射电流调制小于0.1%,因此太小而不能作为自参考激光器的手段。然而,对于较短的脉冲,我们的模拟产生了调制深度的急剧增加。我们还展示了用尖端作为非线性探测器的干涉自相关迹线的测量结果,并将这些结果与两种不同的理论模型进行比较,从而支持我们的数值模型的选择
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