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20242026
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physics.plasm-ph2026

Energy-optimized scaling laws for self-guided laser wakefield accelerators

Petr Valenta, Marcel Lamač, Kyle G. Miller +4

Laser wakefield acceleration promises compact electron accelerators for applications in medicine, industry, and fundamental science. Yet, despite rapid progress, accurately predict…

physics.plasm-ph2026

Single-Shot High-Energy Muon and Particle Radiography with a Multi-GeV Laser-Wakefield-Accelerator-Driven Source

Kaixin Zhu, G. Jackson Williams, Roberto Versaci +29

The authors demonstrate single-shot radiography using a multi‑GeV laser‑wakefield accelerator that generates a beam of muons, pions, and neutrons, successfully imaging objects thro…

physics.plasm-ph2026

Optimized matching conditions for self-guided laser wakefield accelerators

P. Valenta, K. G. Miller, B. K. Russell +4

We revisit the matching conditions for self-guided laser pulse propagation in plasma and refine their formulation to maximize the energy of electrons produced via laser wakefield a…

physics.plasm-ph2026

Pair-loaded electron-only magnetic reconnection using laser-driven capacitor coils

Brandon K. Russell, Qian Qian, Rebecca Fitzgarrald +12

We propose and simulate a laboratory platform to study the effects of positrons in magnetic reconnection using laser-driven capacitor coils. Using particle-in-cell simulations, we…

physics.plasm-ph2026

Photon Accelerator in Magnetized Electron-Ion Plasma

Sergei Bulanov, Stepan Bulanov, Timur Esirkepov +6

Strong magnetic fields and plasmas are intrinsically linked in both terrestrial laboratory experiments and in space phenomena. One of the most profound consequences of that is the…

physics.plasm-ph2025

Towards controlling electron charge with nanoparticle assisted laser wakefield accelerators

Alžběta Špádová, Petr Valenta, Sebastian Lorenz +4

This study explores nanoparticle-assisted electron injection as a method for controlling beam charge in laser wakefield acceleration through particle-in-cell simulations. We system…