This research investigates the open flux-tube spectrum in various SU(Nc) gauge groups, indicating potential axion states.
In this study, we conduct a thorough examination of the spectrum of the open confining string in 3+1 dimensions, commonly referred to as the open flux-tube, across various gauge groups of SU(Nc). Our primary objective is to explore its behaviour as we approach the large-Nc limit and the identification of possible world-sheet axion states. Specifically, we undertake a detailed analysis of the associated spectrum for Nc=3, 4, 5, 6. This marks the first systematic investigation of the open flux-tube spectrum within the context of the large-Nc limit. More specifically, we analyse the spectra of flux-tubes that form between a static quark-antiquark pair, considering a significant number of radial excitations and eight irreducible representations characterized by the quantum numbers of angular momentum $Λ$, charge conjugation and parity ηCP and the reflection symmetry $ε$ for $Λ=0$. To this purpose we employ a diverse set of suitable operators, an anisotropic action, smearing techniques, and solve the generalized eigenvalue problem. We compare our findings with predictions from the Nambu-Goto string model to assess potential tensions indicative of novel phenomena such as the existence of axion-like state along the flux-tube world-sheet. Notably, we provide undoubted evidence of the existence of a massive axion-like particle with the same mass as the corresponding axion extracted within the context of closed flux-tube. This strengthens the conjecture that the axion is a property of the world-sheet of the QCD string.
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Sharifian et al. (2025) studied this question.
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