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Attosecond interferometry with self-amplified spontaneous emission of a free-electron laser

Attosecond interferometry with self-amplified spontaneous emission of a free-electron laser

来源:Arxiv_logoArxiv
英文摘要

Light-phase-sensitive techniques, such as coherent multidimensional spectroscopy, are well-established in a broad spectral range, already spanning from radio-frequencies in nuclear magnetic resonance spectroscopy to visible and ultraviolet wavelengths in nonlinear optics with table-top lasers. Here, the ability to tailor the phases of electromagnetic waves with high precision is essential. In the present contribution we achieve phase control of extreme-ultraviolet pulses from a free-electron laser (FEL) on the attosecond timescale in a Michelson-type all-reflective interferometric autocorrelator. By varying the relative phase of the generated pulse replicas with sub-cycle precision we observe the field interference, i.e. the light-wave oscillation with a period of 129 as. The successful transfer of a powerful optical method towards short-wavelength FEL science and technology paves the way towards utilization of advanced nonlinear methodologies even at partially coherent soft X-ray FEL sources that rely on self-amplified spontaneous emission.

Andreas Przystawik、Christian Haunhorst、Sergey Usenko、Markus Jakob、G¨1nter Brenner、Detlef Kip、Sven Toleikis、Leslie Lamberto Lazzarino、Tim Laarmann

10.1038/ncomms15626

物理学光电子技术加速器

Andreas Przystawik,Christian Haunhorst,Sergey Usenko,Markus Jakob,G¨1nter Brenner,Detlef Kip,Sven Toleikis,Leslie Lamberto Lazzarino,Tim Laarmann.Attosecond interferometry with self-amplified spontaneous emission of a free-electron laser[EB/OL].(2017-02-14)[2025-08-10].https://arxiv.org/abs/1702.04188.点此复制

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