Pentaquarks and Maxim V. Polyakov

Fuente: arXiv
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Autor principal: Kim, Hyun-Chul
Formato: Preprint
Publicado: 2024
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author Kim, Hyun-Chul
author_facet Kim, Hyun-Chul
contents This brief review is dedicated to the memory of Maxim V. Polyakov and his pioneering contributions to pentaquark physics. We focus on his seminal 1997 work with Diakonov and Petrov that predicted the $Θ^+$ pentaquark, a breakthrough that initiated an intense period of research in hadron physics. The field faced a significant setback when the CLAS Collaboration at Jefferson Lab reported null results in 2006, leading to a dramatic decline in light pentaquark research. Nevertheless, Maxim maintained his scientific conviction, supported by continued positive signals from DIANA and LEPS collaborations. Through recent experimental findings on the $Θ^+$ and the nucleon-like resonance $N^*(1685)$, we examine how Polyakov's theoretical insights, particularly the prediction of a narrow width ($Γ\approx 0.5$-$1.0$ MeV), remain relevant to our understanding of the $Θ^+$ light pentaquark.
format Preprint
id arxiv_https___arxiv_org_abs_2411_13292
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Pentaquarks and Maxim V. Polyakov
Kim, Hyun-Chul
High Energy Physics - Phenomenology
High Energy Physics - Experiment
This brief review is dedicated to the memory of Maxim V. Polyakov and his pioneering contributions to pentaquark physics. We focus on his seminal 1997 work with Diakonov and Petrov that predicted the $Θ^+$ pentaquark, a breakthrough that initiated an intense period of research in hadron physics. The field faced a significant setback when the CLAS Collaboration at Jefferson Lab reported null results in 2006, leading to a dramatic decline in light pentaquark research. Nevertheless, Maxim maintained his scientific conviction, supported by continued positive signals from DIANA and LEPS collaborations. Through recent experimental findings on the $Θ^+$ and the nucleon-like resonance $N^*(1685)$, we examine how Polyakov's theoretical insights, particularly the prediction of a narrow width ($Γ\approx 0.5$-$1.0$ MeV), remain relevant to our understanding of the $Θ^+$ light pentaquark.
title Pentaquarks and Maxim V. Polyakov
topic High Energy Physics - Phenomenology
High Energy Physics - Experiment
url https://arxiv.org/abs/2411.13292