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Coherent phase-matched VUV generation by field-controlled bound states

机译:通过场控制的束缚态产生相干相匹配的VUV

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摘要

The generation of high-order harmonics~1 and attosecond pulses~2 at ultrahigh repetition rates (>1 MHz) promises to revolutionize ultrafast spectroscopy. Such vacuum ultraviolet (VUV) and soft X-ray sources could potentially be driven directly by plasmonic enhancement of laser pulses from a femtosecond oscillator~(3,4), but recent experiments suggest that the VUV signal is actually dominated by incoherent atomic line emission~(5,6). Here, we demonstrate a new regime of phase-matched below-threshold harmonic generation, for which the generation and phase matching is enabled only near resonance structures of the atomic target. The coherent VUV line emission exhibits low divergence and quadratic growth with increasing target density up to nearly 1,000 torr mm and can be controlled by the sub-cycle field of a few-cycle driving laser with an intensity of only ~1X10~(13) W cm~(-2), which is achievable directly from few-cycle femtosecond oscillators with nanojoule energy~7.
机译:以超高重复频率(> 1 MHz)产生高阶谐波〜1和阿秒脉冲〜2有望彻底改变超快光谱。此类真空紫外线(VUV)和软X射线源可能是由飞秒振荡器发出的激光脉冲的等离子增强直接驱动的(3,4),但最近的实验表明,VUV信号实际上主要由不相干的原子线发射所控制〜(5,6)。在这里,我们演示了一种相位匹配的低于阈值谐波产生的新机制,对于该机制,只有在原子靶的共振结构附近才能进行产生和相位匹配。相干的VUV线发射具有低发散和二次增长,目标密度增加到近1,000 torr mm,并且可以由强度仅为〜1X10〜(13)W的多周期驱动激光器的子周期场控制。 cm〜(-2),可直接从纳焦能量约为7的几周期飞秒振荡器中获得。

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