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Partial restoration of chiral symmetry in a confining string

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arxiv 1404.7746 v1 pith:5BPEHRIA submitted 2014-04-30 hep-ph hep-latnucl-th

classification hep-phhep-latnucl-th
keywords chiralstringantiquarkcondensateconfinementconfiningdistributionfield
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

We attempt to describe the interplay of confinement and chiral symmetry breaking in QCD by using the string model. We argue that in the quasi-abelian picture of confinement based on the condensation of magnetic monopoles and the dual Meissner effect, the worldsheet dynamics of the confining string can be effectively described by the $1+1$ dimensional massless electrodynamics, which is exactly soluble. The transverse plane distribution of the chromoelectric field stretched between the quark and antiquark sources can then be attributed to the fluctuations in the position of the string. The dependence of the chiral condensate in the string on the (chromo-)electric field can be evaluated analytically, and is determined by the chiral anomaly and the $\theta$-vacuum structure. Therefore, our picture allows to predict the distribution of the chiral condensate in the plane transverse to the axis connecting the quark and antiquark. This prediction is compared to the lattice QCD results; a good agreement is found.

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  1. Machine Learning Insights into Quark-Antiquark Interactions: Probing Field Distributions and String Tension in QCD

    hep-ph 2024-11 conditional novelty 4.0 of 10

    A machine-learning fit to lattice chromo field data yields a compact two-variable expression for E(d, xt) and reproduces flux tube string tension and width over existing separations.

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