Characterization of bright betatron radiation generated by direct laser acceleration of electrons in plasma of near critical density

Author:

Cikhardt J.1ORCID,Gyrdymov M.2ORCID,Zähter S.34ORCID,Tavana P.2ORCID,Günther M. M.3,Bukharskii N.56ORCID,Borisenko N.6,Jacoby J.2,Shen X. F.7,Pukhov A.7ORCID,Andreev N. E.89ORCID,Rosmej O. N.23ORCID

Affiliation:

1. Faculty of Electrical Engineering, Czech Technical University in Prague 1 , 16627 Prague 6, Czech Republic

2. Goethe University, Frankfurt 2 , Max-von-Laue-Straße 1, 60438 Frankfurt am Main, Germany

3. GSI Helmholtzzentrum für Schwerionenforschung GmbH 3 , Planckstraße 1, 64291 Darmstadt, Germany

4. Focused Energy GmbH 4 , Im Tiefen See 45, 64293 Darmstadt, Germany

5. National Research Nuclear University MEPhI 5 , Kashirskoe shosse 31, 115409 Moscow, Russian Federation

6. Lebedev Physical Institute RAS 6 , Leninskiy Prospekt 53, 119991 Moscow, Russian Federation

7. Heinrich-Heine-University Düsseldorf 7 , Universitätsstrasse 1, Düsseldorf, Germany

8. Joint Institute for High Temperatures, RAS 8 , Izhorskaya st. 13, Bldg. 2, 125412 Moscow, Russian Federation

9. Moscow Institute of Physics and Technology 9 , Institutskiy Pereulok 9, 141700 Dolgoprudny, Russia

Abstract

Directed x-rays produced in the interaction of sub-picosecond laser pulses of moderate relativistic intensity with plasma of near-critical density are investigated. Synchrotron-like (betatron) radiation occurs in the process of direct laser acceleration (DLA) of electrons in a relativistic laser channel when the electrons undergo transverse betatron oscillations in self-generated quasi-static electric and magnetic fields. In an experiment at the PHELIX laser system, high-current directed beams of DLA electrons with a mean energy ten times higher than the ponderomotive potential and maximum energy up to 100 MeV were measured at 1019 W/cm2 laser intensity. The spectrum of directed x-rays in the range of 5–60 keV was evaluated using two sets of Ross filters placed at 0° and 10° to the laser pulse propagation axis. The differential x-ray absorption method allowed for absolute measurements of the angular-dependent photon fluence. We report 1013 photons/sr with energies >5 keV measured at 0° to the laser axis and a brilliance of 1021 photons s−1 mm−2 mrad−2 (0.1%BW)−1. The angular distribution of the emission has an FWHM of 14°–16°. Thanks to the ultra-high photon fluence, point-like radiation source, and ultra-short emission time, DLA-based keV backlighters are promising for various applications in high-energy-density research with kilojoule petawatt-class laser facilities.

Funder

Czech Ministry of Education Youth and Sports

Grant Agency of the Czech Repubic

GSI Helmholtzzentrum für Schwerionenforschung

Publisher

AIP Publishing

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