Static-light meson spectroscopy with optimal distillation profiles

Fuente: arXiv
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Main Authors: Struckmeier, Laura, Höllwieser, Roman, Knechtli, Francesco, Korzec, Tomasz, Peardon, Michael, Urrea-Niño, Juan Andrés
Format: Preprint
Published: 2025
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author Struckmeier, Laura
Höllwieser, Roman
Knechtli, Francesco
Korzec, Tomasz
Peardon, Michael
Urrea-Niño, Juan Andrés
author_facet Struckmeier, Laura
Höllwieser, Roman
Knechtli, Francesco
Korzec, Tomasz
Peardon, Michael
Urrea-Niño, Juan Andrés
contents The spectrum of static-light and static-charm mesons is studied using optimized distillation in two different $N_{\rm{f}} = 3 + 1$ QCD ensembles with pion masses of $m_π \approx 800 \, \text{MeV}$ and $m_π \approx 420 \,\text{MeV}$ and a heavy (charm) quark. Local and derivative-based operators are used to access states of multiple quantum numbers. The use of optimal profiles is shown to improve the overlap with the energy states compared to standard distillation.
format Preprint
id arxiv_https___arxiv_org_abs_2501_12863
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Static-light meson spectroscopy with optimal distillation profiles
Struckmeier, Laura
Höllwieser, Roman
Knechtli, Francesco
Korzec, Tomasz
Peardon, Michael
Urrea-Niño, Juan Andrés
High Energy Physics - Lattice
The spectrum of static-light and static-charm mesons is studied using optimized distillation in two different $N_{\rm{f}} = 3 + 1$ QCD ensembles with pion masses of $m_π \approx 800 \, \text{MeV}$ and $m_π \approx 420 \,\text{MeV}$ and a heavy (charm) quark. Local and derivative-based operators are used to access states of multiple quantum numbers. The use of optimal profiles is shown to improve the overlap with the energy states compared to standard distillation.
title Static-light meson spectroscopy with optimal distillation profiles
topic High Energy Physics - Lattice
url https://arxiv.org/abs/2501.12863