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Fuzzy bags, Polyakov loop and gauge/string duality

机译:模糊袋,Polyakov循环和仪表/串二元性

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Confinement in SU(N) gauge theory is due to the linear potential between colored objects. At short distances, the linear contribution could be considered as the quadratic correction to the leading Coulomb term. Recent lattice data show that such quadratic corrections also appear in the deconfined phase, in both the thermal quantities and the Polyakov loop. These contributions are studied systematically employing the gauge/string duality. "Confinement" in N = 4 SU(N) Super Yang-Mills (SYM) theory could be achieved kinematically when the theory is defined on a compact space manifold. In the large-N limit, deconfinement of N = 4 SYM on S~3 at strong coupling is dual to the Hawking-Page phase transition in the global Anti-de Sitter spacetime. Meantime, all the thermal quantities and the Polyakov loop achieve significant quadratic contributions. Similar results can also be obtained at weak coupling. However, when confinement is induced dynamically through the local dilaton field in the gravity-dilaton system, these contributions can not be generated consistently. This is in accordance with the fact that there is no dimension-2 gauge-invariant operator in the boundary gauge theory. Based on these results, we suspect that quadratic corrections, and also confinement, should be due to global or non-local effects in the bulk spacetime.
机译:苏(n)仪表理论的限制是由于彩色物体之间的线性电位。在短距离时,线性贡献可以被认为是对领先的库仑术语的二次校正。最近的晶格数据表明,这种二次校正也出现在解缠结的阶段,在热量和Polyakov回路中。这些贡献是系统地采用仪表/字符串二元性的研究。在N = 4 SU(n)中的“禁闭”超阳磨(Sym)理论可以在紧凑型空间歧管上定义该理论时运动学。在大n限制中,在强耦合下的N = 4符合S〜3的解截止量是全球反De Satter Spacetime中的Hawking-Page阶段转换的双重。同时,所有热量和Polyakov回路都实现了显着的二次贡献。在弱耦合下也可以获得类似的结果。然而,当动态诱导诱导引力 - 稀释系统中的当地Dilaton领域时,不能一致地产生这些贡献。这符合边界仪表理论中没有维度-2尺寸不变的操作员的事实。基于这些结果,我们怀疑二次校正,也是限制,应该是由于散装时空的全球或非局部影响。

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