activity
20232026
collaborators

6 papers

hep-ph2026

First-principle predictions of fragmentation functions via quantum computing

Juan J. Gálvez-Viruet, Felipe J. Llanes-Estrada, Nicolas M. Arenaza +2

We report on an algorithm to compute fragmentation functions from the first principles Quantum Chromodynamics (QCD) Hamiltonian quantized in Light-Front Gauge, opening a path for d…

hep-ph2026

Quantum Computers will constrain the Equation of State of Neutron Stars

Adrián Castaño-García, Nahia J. Dios-Bilbao, J. J. Gálvez-Viruet +4

The Equation of State (EoS) of Nuclear Matter at high densities, and particularly that of neutron stars, resists Quantum Chromodynamics (QCD) comput…

hep-ph2025

Preparations for Quantum Computing in Hadron Physics

J. J. Gálvez-Viruet, M. Gómez-Rocha, F. J. Llanes-Estrada

Quantum computers are coming online and will quickly impact hadron physics once certain fidelity, decoherence and memory thresholds are met, quite possibly within a decade. We revi…

hep-ph2025

Quantum Computing Hadron Fragmentation Functions in Light-Front Chromodynamics

Juan José Gálvez-Viruet, Felipe J. Llanes-Estrada, Nicolás Martínez de Arenaza +2

We deploy Quantum Chromodynamics (QCD) in Light-front Quantization (and Gauge), discretized and truncated in both Fock -- and momentum -- spaces with a particle-register encoding s…

hep-ph2023

Dynamics of heavy quarks in the Fock space

Kamil Serafin, María Gómez-Rocha, Jai More +1

This paper concerns a method of describing hadrons that starts with the canonical front form Hamiltonian of QCD. The method is developed in the relatively simple context of QCD wit…

hep-ph2023

Cancellation of small-x divergences in the three-gluon-vertex Hamiltonian with canonical gluon mass

Juan José Gálvez-Viruet, María Gómez-Rocha

The front form of Hamiltonian dynamics provides a framework within QCD in which interaction terms are invariant under 7 of 10 Poincaré transformations and the vacuum structure is s…