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The (q)over-bar-q bound states and instanton molecules at T >= T-c

机译:T> = T-c处的(q)over-bar-q束缚态和瞬时子分子

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The main objective of this work is to explore the evolution in the structure of the quark-anti-quark bound states in going down in the chirally restored phase from the so-called "zero binding points" T-zb to the full (unquenched) QCD critical temperature T-c at which the Nambu-Goldstone and Wigner-Weyl modes meet. In doing this, we adopt the idea recently introduced by Shuryak and Zahed for charmed (c) over barc, light-quark (q) over barq mesons pi, sigma, rho, A(1) and gluons that at T-zb, the quark-anti-quark scattering length goes through infinity at which conformal invariance is restored, thereby transforming the matter into a near perfect fluid behaving hydrodynamically, as found at RHIC. We show that the binding of these states is accomplished by the combination of (i) the color Coulomb interaction, (ii) the relativistic effects, and (iii) the interaction induced by the instanton-anti-instanton molecules. The spin-spin forces turned out to be small. While near Tzb all mesons are large-size nonrelativistic objects bound by Coulomb attraction, near T-c they get much more tightly bound, with many-body collective interactions becoming important and making the sigma and pi masses approach zero (in the chiral limit). The wave function at the origin grows strongly with binding, and the near-local four-Fermi interactions induced by the instanton molecules play an increasingly more important role as the temperature moves downward toward T-c. (C) 2004 Elsevier B.V. All rights reserved.
机译:这项工作的主要目的是探索在手性还原阶段从所谓的“零结合点” T-zb下降到完整(非猝灭)的夸克-反夸克结合态结构的演变。 Nambu-Goldstone模式和Wigner-Weyl模式相遇的QCD临界温度Tc。为此,我们采用了Shuryak和Zahed最近提出的想法,即在bar-k介子pi,sigma,rho,A(1)和胶子(在T-zb,夸克-反夸克的散射长度经过无穷大,在该处恢复了保形不变性,从而将物质转变为具有流体动力学特性的近乎完美的流体,如RHIC所见。我们表明,这些状态的结合是通过(i)颜色库仑相互作用,(ii)相对论效应和(iii)由瞬时反斯坦斯通分子诱导的相互作用的组合来实现的。旋转力被证明很小。在Tzb附近,所有介子都是受库仑引力约束的大尺寸非相对论物体,而在T-c附近,它们的结合更加紧密,多体集体相互作用变得很重要,使sigma和pi质量接近零(在手性范围内)。起源处的波函数随着结合而强烈增长,并且当温度向下移向T-c时,由瞬时子分子诱导的近局部四费米相互作用起着越来越重要的作用。 (C)2004 Elsevier B.V.保留所有权利。

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