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Enhanced multi-colour gating for the generation of high-power isolated attosecond pulses

机译:增强的多色门控可产生大功率隔离的阿秒脉冲

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摘要

Isolated attosecond pulses (IAP) generated by high-order harmonic generation are valuable tools that enable dynamics to be studied on the attosecond time scale. The applicability of these IAP would be widened drastically by increasing their energy. Here we analyze the potential of using multi-colour driving pulses for temporally gating the attosecond pulse generation process. We devise how this approach can enable the generation of IAP with the available high-energy kHz-repetition-rate Ytterbium-based laser amplifiers (delivering 180-fs, 1030-nm pulses). We show theoretically that this requires a three-colour field composed of the fundamental and its second harmonic as well as a lower-frequency auxiliary component. We present pulse characterization measurements of such auxiliary pulses generated directly by white-light seeded OPA with the required significantly shorter pulse duration than that of the fundamental. This, combined with our recent experimental results on three-colour waveform synthesis, proves that the theoretically considered multi-colour drivers for IAP generation can be realized with existing high-power laser technology. The high-energy driver pulses, combined with the strongly enhanced single-atom-level conversion efficiency we observe in our calculations, thus make multi-colour drivers prime candidates for the development of unprecedented high-energy IAP sources in the near future.
机译:由高次谐波产生所产生的孤立的阿秒脉冲(IAP)是有价值的工具,可以在阿秒时间尺度上研究动力学。通过增加它们的能量,这些IAP的适用范围将大大扩大。在这里,我们分析了使用多色驱动脉冲来暂时选通阿秒脉冲生成过程的潜力。我们设计出这种方法如何利用可用的高能量kHz重复频率Y基激光放大器(提供180 fs,1030 nm脉冲)来生成IAP。我们从理论上表明,这需要一个由基波及其二次谐波以及低频辅助分量组成的三色场。我们介绍了这种由白光种子OPA直接产生的辅助脉冲的脉冲特性测量,其所需的脉冲持续时间比基本脉冲的持续时间短得多。结合我们最近在三色波形合成上的实验结果,证明了使用现有的高功率激光技术可以实现理论上考虑的用于IAP生成的多色驱动器。高能驱动脉冲与我们在计算中观察到的大大增强的单原子级转换效率相结合,从而使多色驱动器成为在不久的将来开发前所未有的高能IAP光源的首选。

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