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首页> 外文期刊>Nature photonics >Tunable isolated attosecond X-ray pulses with gigawatt peak power from a free-electron laser
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Tunable isolated attosecond X-ray pulses with gigawatt peak power from a free-electron laser

机译:可调谐隔离的AttoSecond X射线脉冲与自由电子激光器的Gigawatt峰值电源

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摘要

The quantum-mechanical motion of electrons in molecules and solids occurs on the sub-femtosecond timescale. Consequently, the study of ultrafast electronic phenomena requires the generation of laser pulses shorter than 1 fs and of sufficient intensity to interact with their target with high probability. Probing these dynamics with atomic-site specificity requires the extension of sub-femtosecond pulses to the soft X-ray spectral region. Here, we report the generation of isolated soft X-ray attosecond pulses with an X-ray free-electron laser. Our source has a pulse energy that is millions of times larger than any other source of isolated attosecond pulses in the soft X-ray spectral region, with a peak power exceeding 100 GW. This unique combination of high intensity, high photon energy and short pulse duration enables the investigation of electron dynamics with X-ray nonlinear spectroscopy and single-particle imaging, unlocking a path towards a new era of attosecond science. The generation of ultrashort X-ray pulses with a peak power exceeding 100 GW offers new opportunities for studying electron dynamics with nonlinear spectroscopy and single-particle imaging.
机译:分子和固体中电子的量子机械运动发生在子模糊秒表上。因此,超快电子现象的研究需要短于1 fs的激光脉冲和充分强度与其目标相互作用,具有高概率。用原子位特异性探测这些动态需要将子飞秒脉冲的延伸到软X射线光谱区域。在这里,我们报告了用X射线自由电子激光器的隔离软X射线抗索秒脉冲的产生。我们的源具有比软X射线光谱区域中的任何其他隔离脉冲脉冲大的数百万次大,峰值功率超过100 GW。这种具有高强度,高光子能量和短脉冲持续时间的独特组合使得能够用X射线非线性光谱和单粒子成像来研究电子动力学,从而朝着Atosecond Scient的新时代解锁路径。具有超过100 GW的峰值功率的超短X射线脉冲的产生为具有非线性光谱和单粒子成像的电子动力学提供了新的机会。

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