Insight into the nature of the $P_{c}(4457)$ and related pentaquarks

U. Özdem
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Abstract

We systematically study the electromagnetic properties of pentaquark states from different perspectives to better understand their nature, internal structure, and quantum numbers, determine their hadronization processes, and shed light on their true nature. The present study examines the magnetic moments of the $P_{c}(4457)$ and related hidden-charm pentaquark states with and without strangeness ($[d d][u c] \bar c$, $[u u][s c] \bar c$, $[dd ][s c] \bar c$, $[s s][u c] \bar c$ and $[s s][d c] \bar c$), employing a comprehensive analysis that encompasses both the compact pentaquark configuration and $J^P = \frac{3}{2}^-$ quantum numbers. The present study compares the results regarding the magnetic moment of the $P_{c}(4457)$ pentaquark state with those reported in the existing literature. The numerical results obtained in this study, when considered alongside existing literature, indicate that the magnetic moments of hidden-charm pentaquark states may offer insights into their underlying structures, which in turn can inform the distinction between their spin-parity quantum numbers. It seems that for the future experimental search of the family of hidden-charm pentaquark states, studying the electromagnetic properties of the hidden-charm pentaquark states can provide valuable information.
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洞察$P_{c}(4457)$及相关五夸克的本质
我们从不同角度系统地研究了五夸克态的电磁特性,以便更好地理解它们的性质、内部结构和量子数,确定它们的强子化过程,并揭示它们的真实本质。本研究考察了$P_{c}(4457)$ 和相关隐粲五夸克态($[d d][u c] \bar c$, $[u u][s c] \bar c$、$[dd ][s c]\bar c$、$[s s][u c] \bar c$和$[s s][d c] \bar c$),采用的综合分析包括紧凑五夸克配置和 $J^P = \frac{3}{2}^-$ 量子数。本研究将$P_{c}(4457)$五夸克态的磁矩结果与现有文献报道的结果进行了比较。当把本研究获得的数值结果与现有文献一起考虑时,就会发现隐粲五夸克态的磁矩可能会提供对其潜在结构的洞察力,这反过来又可以为区分它们的自旋极性量子数提供信息。由此看来,研究隐粲五夸克态的电磁特性可以为未来对隐粲五夸克态家族的实验探索提供有价值的信息。
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