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Nucleons and higher spin baryon resonances: an AdS/QCD configurational entropic incursion

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arxiv 2004.04551 v1 pith:NYK57W3F submitted 2020-04-09 hep-th hep-ph

Nucleons and higher spin baryon resonances: an AdS/QCD configurational entropic incursion

classification hep-th hep-ph
keywords familiesmassnucleonsresonancesspectraconfigurationalhighernucleon
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Families of $J^P=1/2+$ nucleons (N(939), N(1440), N(1710), N(1880), N(2100), N(2300)) and $J^P=3/2-$ nucleons (N(1520), N(1700), N(1875) and N(2120)) are scrutinized from the point of view of the configurational entropy (CE). The mass spectra of higher $J^P$ resonances in each one of these families are then obtained when configurational-entropic Regge trajectories, that relate the CE of nucleon families to both their $J^P$ spin and also to their experimental mass spectra, are interpolated. The mass spectra of the next generation of nucleon resonances are then compared to already established baryonic states in PDG. Besides the zero temperature case, the finite temperature analysis is also implemented.

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Cited by 2 Pith papers

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  1. Holographic information measures for spin-$3/2$ $\Delta$ baryons in AdS/QCD

    hep-th 2026-02 unverdicted novelty 4.0

    Holographic AdS/QCD calculations of configurational entropy and complexity for Delta baryons yield Regge trajectories that organize known masses and predict additional resonances.

  2. Digit anomalies in the hadronic mass spectrum, classical and quantum information entropies, and the dynamical QCD scale

    hep-ph 2025-11 conditional novelty 4.0

    The first digits of PDG hadron masses deviate strongly from Benford's law, and the paper reads the resulting Shannon-entropy deficit as a signature of Lambda_QCD.