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N∗ states with hidden charm and a three-body nature

In this work we study the formation of N ∗ ’s as a consequence of the dynamics involved in the N D D ¯ ∗ - N D ¯ D ∗ system when the D D ¯ ∗ - D ¯ D ∗ subsystem generates X (3872) in isospin 0 and Z c ( 3900 ) in isospin 1. States with isospin I = 1 / 2 and mass in the energy region 4400 - 4600 MeV...

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Published in:The European physical journal. A, Hadrons and nuclei Hadrons and nuclei, 2022-02, Vol.58 (2), Article 33
Main Authors: Malabarba, Brenda B., Khemchandani, K. P., Torres, A. Martínez
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container_title The European physical journal. A, Hadrons and nuclei
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description In this work we study the formation of N ∗ ’s as a consequence of the dynamics involved in the N D D ¯ ∗ - N D ¯ D ∗ system when the D D ¯ ∗ - D ¯ D ∗ subsystem generates X (3872) in isospin 0 and Z c ( 3900 ) in isospin 1. States with isospin I = 1 / 2 and mass in the energy region 4400 - 4600 MeV are found to arise with spin-parity J P = 1 / 2 + and 3 / 2 + , thus leading to predictions of the existence of N ∗ resonances with hidden charm and a three-body nature. We also discuss the possibility of the existence of Δ c states, i.e., Δ ’s with hidden charm.
doi_str_mv 10.1140/epja/s10050-022-00681-2
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subjects Hadrons
Heavy Ions
Nuclear Fusion
Nuclear Physics
Particle and Nuclear Physics
Physics
Physics and Astronomy
Regular Article - Theoretical Physics
Subsystems
title N∗ states with hidden charm and a three-body nature
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