collaborators

5 papers

physics.plasm-ph2026

Quantum Monte Carlo Simulations for predicting electron-positron pair production via the linear Breit-Wheeler process

Lucas I. Iñigo Gamiz, Óscar Amaro, Efstratios Koukoutsis +1

Quantum computing (QC) has the potential to revolutionise the future of scientific simulations. To harness the capabilities that QC offers, we can integrate it into hybrid quantum-…

physics.plasm-ph2025

A Fully Spin and Polarization Resolved Strong Field QED Algorithm for Particle-in-Cell Codes

Q. Qian, D. Seipt, M. Vranic +3

Modern ultra-intense laser facilities can generate electromagnetic fields strong enough to accelerate particles to near-light speeds over micron-scale distances and also approach t…

physics.plasm-ph2025

Bright polarised x-ray flashes from dense plasmas

Q. Qian, C. P. Ridgers, S. V. Bulanov +5

Creating a plasma dominated by strong-field QED (SFQED) effects is a major goal of new multi-PW laser facilities. This is motivated by the fact that the fundamental dynamics of suc…

hep-ph2025

Input to the European Strategy for Particle Physics: Strong-Field Quantum Electrodynamics

G. Sarri, B. King, T. Blackburn +21

This document sets out the intention of the strong-field QED community to carry out, both experimentally and numerically, high-statistics parametric studies of quantum electrodynam…

physics.plasm-ph2025

Variational Quantum Simulation of the Fokker-Planck Equation applied to Quantum Radiation Reaction

Óscar Amaro, Lucas I. Iñigo Gamiz, Marija Vranic

Near-future experiments with Petawatt class lasers are expected to produce a high flux of gamma-ray photons and electron-positron pairs through Strong Field Quantum Electrodynamica…