Development of a 100 J, 10 Hz laser for compression experiments at the High Energy Density instrument at the European XFEL

In this paper we review the design and development of a 100 J, 10 Hz nanosecond pulsed laser, codenamed DiPOLE100X, being built at the Central Laser Facility (CLF). This 1 kW average power diode-pumped solid-state laser (DPSSL) is based on a master oscillator power amplifier (MOPA) design, which inc...

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Veröffentlicht in:High power laser science and engineering 2018, Vol.6, Article e65
Hauptverfasser: Mason, Paul, Banerjee, Saumyabrata, Smith, Jodie, Butcher, Thomas, Phillips, Jonathan, Höppner, Hauke, Möller, Dominik, Ertel, Klaus, De Vido, Mariastefania, Hollingham, Ian, Norton, Andrew, Tomlinson, Stephanie, Zata, Tinesimba, Merchan, Jorge Suarez, Hooker, Chris, Tyldesley, Mike, Toncian, Toma, Hernandez-Gomez, Cristina, Edwards, Chris, Collier, John
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Sprache:eng
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Zusammenfassung:In this paper we review the design and development of a 100 J, 10 Hz nanosecond pulsed laser, codenamed DiPOLE100X, being built at the Central Laser Facility (CLF). This 1 kW average power diode-pumped solid-state laser (DPSSL) is based on a master oscillator power amplifier (MOPA) design, which includes two cryogenic gas cooled amplifier stages based on DiPOLE multi-slab ceramic Yb:YAG amplifier technology developed at the CLF. The laser will produce pulses between 2 and 15 ns in duration with precise, arbitrarily selectable shapes, at pulse repetition rates up to 10 Hz, allowing real-time shape optimization for compression experiments. Once completed, the laser will be delivered to the European X-ray Free Electron Laser (XFEL) facility in Germany as a UK-funded contribution in kind, where it will be used to study extreme states of matter at the High Energy Density (HED) instrument.
ISSN:2095-4719
2052-3289
DOI:10.1017/hpl.2018.56