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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

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-ph2026

Generation of High Order Harmonics in Vacuum for Various Configurations of Interacting Electromagnetic Field

Pavel Sasorov, Sergei Bulanov

High order harmonic (HOH) generation by interacting extremely intense electromagnetic waves in the quantum vacuum is investigated within the framework of the Heisenberg-Euler forma…

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…