论文标题
在较强相互作用中的共形对称性 - 色 - 色 - 中性连接
The Conformal-Symmetry--Color-Neutrality Connection in Strong Interaction
论文作者
论文摘要
辐射的颜色中立性被解释为强烈相互作用的综合对称性的表达,后者通过低传递的动量的检测到的“行走”发出信号,$ \ lim_ {q^2 \ to 0}α_s(q^2)/π\ to 1 $,free($α__s$ free)free free free free free free free free free free($α__)事实是,共形的对称性允许夸克和胶子居住在压实的$ ads_5 $边界上,其拓扑为$ s^1 \ times s^3 $,一个封闭的空间,可以按照颜色限制,可以完全带有颜色充电的中性配置。紧凑型半径曾与$λ_{QCD} $一起用作第二刻度,在QCD的红外策略中提供了$α_s(q^2)$“冻结”机制,从而使conformanty-ymmetry-symerry-color-color-color-color-neutrality在低能源处的连接。通过这种方式,红外过程中的过程的扰动描述可能会获得意义。因此,有可能根据保形波算子方程来通过量子力学来解决QCD,从而有效地描述了广泛的描述
The color neutrality of hadrons is interpreted as an expression of conformal symmetry of strong interaction, the latter being signaled through the detected "walking" at low transferred momenta, $\lim_{Q^2\to 0}α_s(Q^2)/π\to 1 $, of the strong coupling toward a fixed value ($α_s $ "freezing" ). The fact is that conformal symmetry admits quarks and gluons to reside on the compactified $AdS_5$ boundary, whose topology is $S^1\times S^3$, a closed space that can bear exclusively color-charge neutral configurations, precisely as required by color confinement. The compactification radius, once employed as a second scale alongside with $Λ_{QCD}$, provides for an $α_s(Q^2) $ "freezing" mechanism in the infrared regime of QCD, thus making the conformal-symmetry--color-neutrality connection at low energies evident. In this way, perturbative descriptions of processes in the infrared could acquire meaning. In consequence, it becomes possible to address QCD by quantum mechanics in terms of a conformal wave operator equation, which leads to an efficient description of a wide range of