Free-electron laser temporal diagnostic beamline FL21 at FLASH
A beamline for temporal diagnostics of extreme ultraviolet (XUV) femtosecond pulses at the free-electron laser in Hamburg (FLASH) at DESY was designed, built and put into operation. The intense ultra-short XUV pulses of FLASH fluctuate from pulse to pulse due to the underlying FEL operating principl...
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Veröffentlicht in: | Optics express 2023-06, Vol.31 (12), p.19146-19158 |
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creator | Ivanov, Rosen Bidhendi, Mahdi M Bermúdez Macias, Ivette J Brachmanski, Maciej Kreis, Svea Bonfigt, Susanne Degenhardt, Markus Czwalinna, Marie-Kristin Pergament, Mikhail Kellert, Martin Kärtner, Franz X Düsterer, Stefan |
description | A beamline for temporal diagnostics of extreme ultraviolet (XUV) femtosecond pulses at the free-electron laser in Hamburg (FLASH) at DESY was designed, built and put into operation. The intense ultra-short XUV pulses of FLASH fluctuate from pulse to pulse due to the underlying FEL operating principle and demand single-shot diagnostics. To cope with this, the new beamline is equipped with a terahertz field-driven streaking setup that enables the determination of single pulse duration and arrival time. The parameters of the beamline and the diagnostic setup as well as some first experimental results will be presented. In addition, concepts for parasitic operation are investigated. |
doi_str_mv | 10.1364/OE.492228 |
format | Article |
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The intense ultra-short XUV pulses of FLASH fluctuate from pulse to pulse due to the underlying FEL operating principle and demand single-shot diagnostics. To cope with this, the new beamline is equipped with a terahertz field-driven streaking setup that enables the determination of single pulse duration and arrival time. The parameters of the beamline and the diagnostic setup as well as some first experimental results will be presented. 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title | Free-electron laser temporal diagnostic beamline FL21 at FLASH |
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