Partially connected contributions to baryon masses in QCD+QED

Fuente: arXiv
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Main Authors: Altherr, Anian, Campos, Isabel, Cotellucci, Alessandro, Gruber, Roman, Harris, Tim, Komijani, Javad, Lücke, Jens, Marinković, Marina Krstić, Parato, Letizia, Patella, Agostino, Rosso, Sara, Tavella, Paola
Format: Preprint
Published: 2025
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author Altherr, Anian
Campos, Isabel
Cotellucci, Alessandro
Gruber, Roman
Harris, Tim
Komijani, Javad
Lücke, Jens
Marinković, Marina Krstić
Parato, Letizia
Patella, Agostino
Rosso, Sara
Tavella, Paola
author_facet Altherr, Anian
Campos, Isabel
Cotellucci, Alessandro
Gruber, Roman
Harris, Tim
Komijani, Javad
Lücke, Jens
Marinković, Marina Krstić
Parato, Letizia
Patella, Agostino
Rosso, Sara
Tavella, Paola
contents Full QCD+QED simulations allow to evaluate isospin breaking corrections to hadron masses. With the openQxD code, we are able to perform these simulations employing C-periodic boundary conditions, implemented through a doubling of the physical lattice along one spatial direction. The use of these boundary conditions introduces non-zero Wick contractions between two quark or two antiquark fields, that, in the case of the computation of baryon masses, lead to partially connected additional contributions that we expect to vanish in the infinite volume limit. These contributions are challenging because they involve an all-to-all propagator connecting one point in the physical lattice and one in the mirror lattice. We present a way to compute these corrections to the $Ω^-$ baryon mass using a combination of point and stochastic source inversions. This work is part of the program of the RC* collaboration.
format Preprint
id arxiv_https___arxiv_org_abs_2502_03961
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Partially connected contributions to baryon masses in QCD+QED
Altherr, Anian
Campos, Isabel
Cotellucci, Alessandro
Gruber, Roman
Harris, Tim
Komijani, Javad
Lücke, Jens
Marinković, Marina Krstić
Parato, Letizia
Patella, Agostino
Rosso, Sara
Tavella, Paola
High Energy Physics - Lattice
Full QCD+QED simulations allow to evaluate isospin breaking corrections to hadron masses. With the openQxD code, we are able to perform these simulations employing C-periodic boundary conditions, implemented through a doubling of the physical lattice along one spatial direction. The use of these boundary conditions introduces non-zero Wick contractions between two quark or two antiquark fields, that, in the case of the computation of baryon masses, lead to partially connected additional contributions that we expect to vanish in the infinite volume limit. These contributions are challenging because they involve an all-to-all propagator connecting one point in the physical lattice and one in the mirror lattice. We present a way to compute these corrections to the $Ω^-$ baryon mass using a combination of point and stochastic source inversions. This work is part of the program of the RC* collaboration.
title Partially connected contributions to baryon masses in QCD+QED
topic High Energy Physics - Lattice
url https://arxiv.org/abs/2502.03961