Ultrabroad-band x-ray source using a picosecond, laser-driven plasma accelerator

Author:

Lemos N.1ORCID,King P. M.12,Rusby D.1,Pagano I.12,Sinclair M.3ORCID,Marsh K. A.3ORCID,Shaw J. L.4,Milder A. L.4,Pak A.1,Pollock B. B.1,Aufderheide M.1,Hartemann F. V.15,Wu S. Q.1ORCID,Hwang Y.5,Hegelich B. M.267,Moody J.1,Michel P.1,Joshi C.3,Albert F.1

Affiliation:

1. Lawrence Livermore National Laboratory

2. University of Texas at Austin

3. University of California Los Angeles

4. University of Rochester

5. Lumitron Technologies

6. Center for Relativistic Laser Science

7. GIST

Abstract

An ultrabroad-band x-ray source, with photon energies from 10 keV to >1 MeV, based on a picosecond laser-driven plasma accelerator, is characterized and used to radiograph high-energy-density-science relevant targets. The measured yield of 1012 photons/shot is reaching the necessary photon yields to radiograph, in a single shot, high areal density objects and matter under extreme conditions. By focusing a short laser pulse (120 J, 1 ps) into a gas jet, a <100 mrad electron beam with energies up to 350 MeV and up to 70 nC of charge was produced by a combination of laser self-modulation instability and direct laser acceleration. A foil placed at the exit of the gas jet is used to convert part of the electron beam energy into x rays through inverse bremsstrahlung and/or inverse Compton scattering, generating a bright, broad-band, high-photon-energy beam. This beam is used to radiograph a gold half hohlraum with a high-density sphere inside with relevant characteristics for high-energy-density science and inertial confinement fusion. Published by the American Physical Society 2024

Funder

U.S. Department of Energy

Laboratory Directed Research and Development

Office of Science

Air Force Office of Scientific Research

Publisher

American Physical Society (APS)

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