6 papers
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…
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…
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…
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…
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…
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…