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High-Precision Ramsey-Comb Spectroscopy Based on High-Harmonic Generation

机译:基于高次谐波产生的高精度拉姆西-康姆光谱

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High-harmonic generation (HHG) is widely used for up-conversion of amplified (near) infrared ultrafast laser pulses to short wavelengths. We demonstrate that Ramsey-comb spectroscopy, based on two such pulses derived from a frequency-comb laser, enables us to observe phase effects in this process with a few mrad precision. As a result, we could perform the most accurate spectroscopic measurement based on light from HHG, illustrated with a determination of the 5p(6) -> 5p(5)8s(2) [3/2](1) transition at 110 nm in Xe-132. We improve its relative accuracy 10(4) times to a value of 2.3 x 10(-10). This is 3.6 times better than shown before involving HHG, and promising to enable 1S-2S spectroscopy of He+ for fundamental tests.
机译:高谐波产生(HHG)被广泛用于将放大的(近)红外超快激光脉冲向上转换为短波长。我们证明了基于两个从频率梳状激光产生的脉冲的拉姆西梳状光谱,使我们能够以几毫弧度的精度观察此过程中的相位效应。结果,我们可以基于来自HHG的光执行最准确的光谱测量,并通过在110 nm处确定5p(6)-> 5p(5)8s(2)[3/2](1)跃迁来说明在Xe-132中。我们将其相对精度提高了10(4)倍,达到2.3 x 10(-10)。这比参与HHG之前的结果要好3.6倍,并有望实现He +的1S-2S光谱用于基本测试。

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