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Fractional high-order harmonic combs and energy tuning by attosecond-precision split-spectrum pulse control

机译:分数次高阶谐波梳和阿托秒精度分谱脉冲控制的能量调整

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We experimentally control high-order harmonic generation by applying a versatile few-cycle pulse-shape control method: splitting up a single broadband continuous laser spectrum into two sections and applying sub-femtosecond relative time delays. For certain time delays, fractional high-harmonic combs (noninteger harmonics) are generated which we find to result from the controlled interference of two attosecond pulse trains. We also observe time-delay-dependent energy-tunability of the high-order harmonics for an asymmetrically split spectrum consisting of a strong and a weak component. The tuning mechanism is quantitatively understood by the controlled modulation of the instantaneous driver frequency at the peak of the shaped laser pulse.
机译:我们通过应用通用的几周期脉冲形状控制方法来实验性地控制高次谐波的产生:将单个宽带连续激光光谱分为两个部分,并应用亚飞秒的相对时间延迟。对于某些时间延迟,会生成分数高次谐波梳(非整数谐波),这是由两个阿秒脉冲序列的受控干扰导致的。我们还观察到由强和弱组成的不对称分裂频谱的高阶谐波的时延依赖于能量的可调性。通过在成形激光脉冲的峰值处对瞬时驱动器频率进行受控调制,可以定量地了解调谐机制。

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