Full aperture backscatter diagnostics for characterization of laser plasma instabilities at the extreme light infrastructure (ELI) beamlines

Author:

Wasser F.12ORCID,Zähter Ş.1ORCID,Sokol M.1ORCID,Rivers M.3ORCID,Atzeni S.1ORCID,Condamine F. P.4ORCID,Cristoforetti G.5ORCID,Fauvel G.4ORCID,Fischer N.1ORCID,Gizzi L. A.5ORCID,Hannasch A.1ORCID,Hesse M.1ORCID,Laštovička T.4ORCID,Lutz P.1ORCID,Rubovič P.4ORCID,Schaumann G.1,Schott N.16ORCID,Singh R. L.4ORCID,Theobald W.1ORCID,Weber S.4ORCID,Ditmire T.3ORCID,Forner T.1ORCID,Roth M.16ORCID

Affiliation:

1. Focused Energy GmbH 1 , Im Tiefen See 45, 64293 Darmstadt, Germany

2. IU Internationale Hochschule GmbH 2 , Darmstädter Landstrasse 110, 60598 Frankfurt am Main, Germany

3. University of Texas 3 , 110 Inner Campus Dr., Austin, Texas 78712, USA

4. Extreme Light Infrastructure ERIC, ELI-Beamlines Facility 4 , 25241 Dolní Břežany, Czech Republic

5. Intense Laser Irradiation Laboratory, INO-CNR 5 , Pisa, Italy

6. Technische Universität Darmstadt 6 , Schlossgartenstrasse 9, 64289 Darmstadt, Germany

Abstract

We report on the commissioning of a full aperture backscatter diagnostics station for the kilojoule, nanosecond high repetition rate L4n laser operating at a wavelength of 527 nm at the Extreme Light Infrastructure (ELI) - Beamlines, Dolni Brezany, Czech Republic. Light scattered back from laser–plasma interaction into the cone of the final focusing lens is captured and split into different channels to measure the signatures of laser plasma instabilities from stimulated Brillouin scattering, stimulated Raman scattering, and two plasmon decay with respect to back scattered energy, its spectrum, and its temporal profile. The performance was confirmed in a commissioning experiment with more than 800 shots at laser intensities ranging from 0.5 × 1013 to 1.1 × 1015 W cm−2. These diagnostics are permanently installed at ELI Beamlines, and can be used to understand the details of laser–plasma interactions in experiments with kJ and 527 nm light. The large number of shots that can be collected in an experimental campaign will allow us to study the details of the laser–plasma interaction with a high level of confidence.

Publisher

AIP Publishing

Subject

Instrumentation

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