arXiv · 2607.21830
Energy-resolved measurement of individual GeV muon tracks generated by electrons from a compact Laser-Plasma Accelerator
Abstract
Recently, the possibility of LPA-produced muon beams has gained significant interest within the accelerator application community. Directional, multi-GeV muons can be produced via Bethe-Heitler interactions when multi-GeV electrons hit solid targets. They are highly penetrating and, thanks to the compactness of the LPA, offer a path toward a deployable, active muon source. At the BELLA Center of the Lawrence Berkeley National Laboratory, we previously unambiguously detected muons generated during the interaction of multi-GeV electron beams with a 4 meter-thick electron beam dump. A new campaign has now extended our diagnostic capabilities to single-muon trajectory reconstruction and energy measurements. The setup allowed us to individually reconstruct each muon trajectory, defined by us as a muon passing through three detectors used for the reconstruction. For a subset of events, we extracted the muon energy from the magnetic-field bending angle, demonstrating production of GeV-scale muons. This work provides a key demonstration of track-based active-source muography, which enables non-invasive 3D density mapping of concealed or inaccessible samples, and it will accelerate the development of active LPA-based muon sources where compactness, controlled directionality, low divergence, and deep penetration are required.
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Davide Terzani, Luc Le Pottier, Stanimir Kisyov, Pranav Manoj, Ryan Heller, Maria Mironova, Alex Picksley, Joshua Stackhouse, Hai-En Tsai, Raymond Li, Timon Heim, Maurice Garcia-Sciveres, Carlo Benedetti, John Valentine, Kei Nakamura, Anthony J. Gonsalves, Jeroen van Tilborg, Carl B. Schroeder, Eric Esarey, Cameron G. R. Geddes. 2026-07-23. Energy-resolved measurement of individual GeV muon tracks generated by electrons from a compact Laser-Plasma Accelerator. https://arxiv.org/abs/2607.21830
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