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Role of chiral symmetry in the nucleon excitation spectrum

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arxiv 1910.13782 v2 pith:QB2U3P46 submitted 2019-10-30 hep-lat hep-phnucl-th

classification hep-lathep-phnucl-th
keywords chiralresonancerolesymmetryactionfermionlatticelow-lying
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

The origin of the low-lying nature of the $N$*(1440), or Roper resonance, has been the subject of significant interest for many years, including several investigations using lattice QCD. The majority of lattice studies have not observed a low-lying excited state energy level in the region of the Roper resonance. However, it has been claimed that chiral symmetry could play an important role in our understanding of this resonance. The purpose of this study is to systematically examine the role of chiral symmetry in the low-lying nucleon spectrum by directly comparing the clover and overlap fermion actions. To ensure any differences in results are attributable to the choice of fermion action, simulations are performed on the same set of gauge field configurations at matched pion masses. Correlation matrix techniques are employed to determine the excitation energy of the first positive-parity excited state for each action. The clover and overlap actions show a remarkable level of agreement. We do not find any evidence that fermion action chiral symmetry plays a significant role in understanding the Roper resonance on the lattice.

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  1. Physical interpretation of the 2s excitation of the nucleon

    hep-lat 2024-12 conditional novelty 5.0 of 10

    The 2s radial excitation of the nucleon is found to stay near 2 GeV when meson-baryon couplings are suppressed by quenching, supporting its association with the N(1710) and N(1880) resonances rather than the Roper.

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