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The light-baryon spectrum in a relativistic quark model with instanton-induced quark forces: The non-strange-baryon spectrum and ground states

机译:相对论夸克模型中具有光子诱发夸克力的光重子光谱:非奇异重子光谱和基态

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This is the second of a series of three papers treating light-baryon resonances up to 3 GeV within a relativistically covariant quark model based on the three-fermion Bethe-Salpeter equation with instantaneous two- and three-body forces. In this paper we apply the covariant Salpeter framework (which we developed in the first paper, U. Loring, K. Kretzschmar, B.Ch. Metsch, H.R. Petry, Eur. Phys. J. A 10, 309 (2001)) to specific quark model calculations. Quark confinement is realized by a linearly rising three-body string potential with appropriate spinorial structures in Dirac space. To describe the hyperfine structure of the baryon spectrum we adopt 't Hooft's residual interaction based on QCD-instanton effects and demonstrate that the alternative one-gluon exchange is disfavored on phenomenological grounds. Our fully relativistic framework allows to investigate the effects of the full Dirac structures of residual and confinement forces on the structure of the mass spectrum. In the present paper we present a detailed analysis of the complete non-strange-baryon spectrum and show that several prominent features of the nucleon spectrum such as, e.g., the Roper resonance and approximate "parity doublets" can be uniformly explained due to a specific interplay of relativistic effects, the confinement potential and 't Hooft's force. The results for the spectrum of strange baryons will be discussed in a subsequent paper, see U. Loring, B.Ch. Metsch, H.R. Petry, this issue, p. 447.
机译:这是三篇论文的系列文章中的第二篇,该论文基于具有瞬时二体力和三体力的三费米子Bethe-Salpeter方程,在相对论协方差夸克模型中处理高达3 GeV的轻子重子共振。在本文中,我们将协变量Salpeter框架(我们在第一篇论文中开发的U.Loring,K.Kretzschmar,B.Ch.Metsch,HR Petry,Eur.Phys.J.A 10,309(2001))应用于特定的夸克模型计算。夸克禁闭是通过Dirac空间中具有适当脊柱结构的线性上升的三体弦电势来实现的。为了描述重子光谱的超精细结构,我们采用基于QCD-stanton效应的't Hooft残差相互作用,并证明在现象学基础上不利于另一种单胶子交换。我们的完全相对论框架允许研究残余力和约束力的整个狄拉克结构对质谱图结构的影响。在本文中,我们对完整的非奇异重子光谱进行了详细分析,结果表明,由于特定的原因,可以统一解释核子光谱的几个突出特征,例如罗珀共振和近似“奇偶双峰”相对论效应,禁闭潜力和“霍夫特力”的相互作用。奇怪重子的光谱结果将在随后的论文中讨论,请参阅U. Loring,B.Ch. Metsch,H.R. Petry,本期,p。 447。

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