collaborators

7 papers

physics.acc-ph2026

Strong-field focusing of high-energy particles in beam-multifoil collisions

Aimé Matheron, Doug Storey, Max F. Gilljohann +25

Extreme beams of charged particles and photons, reaching ultrahigh densities or producing intense gamma-ray bursts, are central to accelerator physics, laboratory astrophysics, and…

physics.optics2026

Ultra-Short flying-focus

Jérôme Touguet, Igor A. Andriyash, Lucas Rovige +1

Achromatic flying-focus enables programmable control of intensity peak velocity, with applications in ultrafast optics. However, spatiotemporal coupling inherently elongates ultras…

physics.plasm-ph2026

Optical modelling of shaped laser pulses in plasma

Igor A. Andriyash, Cedric Thaury

This work provides a brief review of the numerical methods for modelling the optical propagation of an ultrashort, intense laser pulse in plasmas and ionizable gases. These methods…

physics.acc-ph2026

Demonstration of ultra-low emittance beams in a kHz laser wakefield accelerator and application to electron diffraction

J. Monzac, S. Smartsev, J. Huijts +12

We present a compact, cost-effective method for measuring the emittance of kHz-repetition-rate laser-wakefield accelerated electron beams using a permanent solenoid. The measured n…

physics.plasm-ph2026

Advanced Shaping of Quasi-Bessel Beams for High-Intensity Applications

Jérôme Touguet, Igor Andriyash, Ronan Lahaye +4

Quasi-Bessel beams produced by axiparabolas are increasingly used in high-intensity laser applications, yet their longitudinal profiles exhibit unwanted oscillations that limit the…

physics.plasm-ph2025

Experimental Demonstration of Dephasing Reduction in an Optically Guided Laser-Plasma Accelerator

Ronan Lahaye, Igor A. Andriyash, Julien Gautier +5

Laser-plasma accelerators offer a compact means of producing high-energy electron beams, but their performance is fundamentally limited by dephasing between the accelerated electro…