Single-shot femtosecond electron diffraction with laser-accelerated electrons: experimental demonstration of electron pulse compression

We report the first experimental demonstration of longitudinal compression of laser-accelerated electron pulses. Accelerated by a femtosecond laser pulse with an intensity of 10¹⁸ W/cm², an electron pulse with an energy of around 350 keV and a relative momentum spread of about 10⁻² was compressed to...

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Veröffentlicht in:Physical review letters 2010-11, Vol.105 (21), p.215004-215004, Article 215004
Hauptverfasser: Tokita, Shigeki, Hashida, Masaki, Inoue, Shunsuke, Nishoji, Toshihiko, Otani, Kazuto, Sakabe, Shuji
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Sprache:eng
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Zusammenfassung:We report the first experimental demonstration of longitudinal compression of laser-accelerated electron pulses. Accelerated by a femtosecond laser pulse with an intensity of 10¹⁸ W/cm², an electron pulse with an energy of around 350 keV and a relative momentum spread of about 10⁻² was compressed to a 500-fs pulse at a distance of about 50 cm from the electron source by using a magnetic pulse compressor. This pulse was used to generate a clear diffraction pattern of a gold crystal in a single shot. This method solves the space-charge problem in ultrafast electron diffraction.
ISSN:0031-9007
1079-7114
DOI:10.1103/PhysRevLett.105.215004