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Measurement of directional muon beams generated at the Berkeley Lab Laser Accelerator

Authors :
Terzani, Davide
Kisyov, Stanimir
Greenberg, Stephen
Pottier, Luc Le
Mironova, Maria
Picksley, Alex
Stackhouse, Joshua
Tsai, Hai-En
Li, Raymond
Rockafellow, Ela
Heim, Timon
Garcia-Sciveres, Maurice
Benedetti, Carlo
Valentine, John
Milchberg, Howard
Nakamura, Kei
Gonsalves, Anthony J.
van Tilborg, Jeroen
Schroeder, Carl B.
Esarey, Eric
Geddes, Cameron G. R.
Publication Year :
2024

Abstract

We present the detection of directional muon beams produced using a PW laser at the Lawrence Berkeley National Laboratory. The muon source is a multi-GeV electron beam generated in a 30 cm laser plasma accelerator interacting with a high-Z converter target. The GeV photons resulting from the interaction are converted into a high-flux, directional muon beam via pair production. By employing scintillators to capture delayed events, we were able to identify the produced muons and characterize the source. Using theoretical knowledge of the muon production process combined with simulations that show outstanding agreement with the experiments, we demonstrate that the multi-GeV electron beams produce muon beams with GeV energies and fluxes, at a few meters from the source, up to 4 orders of magnitude higher than cosmic ray muons. Laser-plasma-accelerator-based muon sources can therefore enhance muon imaging applications thanks to their compactness, directionality, and high fluxes which reduce the exposure time by orders of magnitude compared to cosmic ray muons. Using the Geant4-based simulation code we developed to gain insight into the experimental results, we can design future experiments and applications based on LPA-generated muons.

Details

Database :
arXiv
Publication Type :
Report
Accession number :
edsarx.2411.02321
Document Type :
Working Paper