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飞秒驱动的相对论振荡等离子体反射镜:产生超强孤立阿秒脉冲的光源。

Few-cycle driven relativistically oscillating plasma mirrors: a source of intense isolated attosecond pulses.

机构信息

Max-Planck-Institut für Quantenoptik, D-85748 Garching, Germany.

出版信息

Phys Rev Lett. 2012 Jun 8;108(23):235003. doi: 10.1103/PhysRevLett.108.235003. Epub 2012 Jun 6.

Abstract

The conditions required for the production of isolated attosecond pulses from relativistically oscillating mirrors (ROM) are investigated numerically and experimentally. In simulations, carrier-envelope-phase-stabilized three-cycle pulses are found to be sufficient to produce isolated attosecond pulses, while two-cycle pulses will predominantly lead to isolated attosecond pulses even in the absence of carrier-envelope stabilization. Using a state-of-the-art laser system delivering three-cycle pulses at multiple-terawatt level, we have generated higher harmonics up to 70 eV photon energy via the ROM mechanism. The observed spectra are in agreement with theoretical expectations and highlight the potential of few-cycle-driven ROM harmonics for intense isolated attosecond pulse generation for performing extreme ultraviolet-pump extreme ultraviolet-probe experiments.

摘要

从相对论振动镜(ROM)中产生孤立阿秒脉冲的条件进行了数值和实验研究。在模拟中,发现载波包络相位稳定的三周期脉冲足以产生孤立的阿秒脉冲,而即使没有载波包络稳定,两周期脉冲也主要导致孤立的阿秒脉冲。使用最先进的激光系统,在多太瓦级水平下提供三周期脉冲,我们通过 ROM 机制产生了高达 70 eV 光子能量的高次谐波。观察到的光谱与理论预期一致,并突出了几周期驱动的 ROM 谐波在进行极端紫外泵浦极端紫外探测实验时产生强孤立阿秒脉冲的潜力。

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