The case of equivalence of low and high energy constraints on Regge vector spectrum in AdS/QCD

S. Afonin, T. Solomko
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引用次数: 3

Abstract

The AdS/QCD models are believed to interpolate between low and high energy sectors of QCD. This belief is usually based on observations that many phenomenologically reasonable predictions follow from bounds imposed at high energies although the hypothetical range of applicability of semiclassical bottom-up holographic models is restricted by the gauge/gravity duality to low energies where QCD is strongly coupled. For testing the feasibility of high energy constraints it is interesting to calculate holographically some observable constants at low and high momenta independently and compare. We consider an AdS/QCD model describing the Regge-like linear spectrum of spin-1 mesons in a general form and show that under definite physical assumptions, the low-energy constraints on 2-point correlation functions lead to nearly the same numerical values for the parameters of linear radial spectrum as the high energy ones. The found approximate coincidence looks surprising in view of the fact that such a property for observables is natural for conformal theories while real strong interactions are not conformal.
AdS/QCD中Regge矢量谱低能约束和高能约束等价的情况
AdS/QCD模型被认为是在QCD的低能级和高能级之间进行插值。这种信念通常基于观察,即许多现象学上合理的预测遵循高能量的边界,尽管半经典自下而上全息模型的假设适用范围受到规范/重力对偶性的限制,只能适用于QCD强耦合的低能。为了验证高能约束的可行性,我们有必要分别在低动量和高动量下全息计算一些可观测常数并进行比较。我们考虑了一般形式描述自旋-1介子类regge线性谱的AdS/QCD模型,并证明了在确定的物理假设下,两点相关函数的低能约束导致线性径向谱参数的数值与高能约束几乎相同。发现的近似巧合看起来令人惊讶,因为这种可观测值的性质在共形理论中是自然的,而真正的强相互作用则不是共形的。
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