Chiral perturbation theory for heavy hadrons and chiral effective field theory for heavy hadronic molecules
Lu Meng, Bo Wang, Guang-Juan Wang, Shi-Lin Zhu

TL;DR
This paper reviews how chiral symmetry and effective field theories describe the properties and interactions of heavy hadrons and their molecular states, connecting QCD, nuclear physics, and recent experimental discoveries.
Contribution
It provides a comprehensive review of chiral perturbation theory and chiral effective field theory applications to heavy hadrons and their molecular states, highlighting recent progress and experimental implications.
Findings
Chiral corrections influence heavy meson and baryon properties.
Light pseudoscalar meson and heavy hadron scattering explains new resonances.
Chiral dynamics govern the formation of heavy hadronic molecules.
Abstract
Chiral symmetry and its spontaneous breaking play an important role both in the light hadron and heavy hadron systems. The chiral perturbation theory (PT) is the low energy effective field theory of the QCD. In this work, we shall review the investigations on the chiral corrections to the properties of the heavy mesons and baryons within the framework of PT. We will also review the scatterings of the light pseudoscalar mesons and heavy hadrons, through which many new resonances such as the could be understood. Moreover, many new hadron states were observed experimentally in the past decades. A large group of these states is near-threshold resonances, such as the charged charmoniumlike and states, bottomoniumlike states, hidden-charm pentaquark and states and the doubly charmed state, etc. They are very good…
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Taxonomy
TopicsQuantum Chromodynamics and Particle Interactions · High-Energy Particle Collisions Research · Nuclear physics research studies
