论文标题

天体形成野外理论的要素

Elements of Celestial Conformal Field Theory

论文作者

Fan, Wei, Fotopoulos, Angelos, Stieberger, Stephan, Taylor, Tomasz R., Zhu, Bin

论文摘要

在天体全息图中,四维散射幅度被认为是推定的二维天体保形场理论(CCFT)的二维形成式相关因子。将动量空间振幅转换为CCFT相关因子的最简单方法是将其梅尔蛋白相对于轻骨能量进行转化。然而,对于无质量的颗粒,这样的构造会导致三分和四点相关因子,除了测度量度为零的天体坐标外,各地都消失了。这是由于四维动量保护定律限制了与无质量颗粒相关的操作员的插入点。这些相关因子让人联想起库仑气体相关因子,在没有背景电荷的情况下,由于电荷保护而消失了。我们通过将阳米尔斯理论耦合到背景dilaton场,并与(复杂的)dilaton源位于天体球体中,提供背景动量。这幅画来自Banerjee和Ghosh发现的微分方程系统解决方案的物理解释。我们表明,可以将解决方案写成在这种dilaton背景中评估的振幅的梅林变换。所得的三绿色和四聚浓度幅度是享受交叉对称性的天体坐标的单值函数,以及从标准CFT相关器中预期的所有其他属性。我们使用它们来提取操作,并将它们与从没有dialaton背景的多绿色天体振幅中提取的操作进行比较。我们执行四胶弹单值相关器的共形块分解,并确定CCFT Yang-Mills扇区整个主要场谱的尺寸,自旋和组表示。

In celestial holography, four-dimensional scattering amplitudes are considered as two-dimensional conformal correlators of a putative two-dimensional celestial conformal field theory (CCFT). The simplest way of converting momentum space amplitudes into CCFT correlators is by taking their Mellin transforms with respect to light-cone energies. For massless particles, like gluons, however, such a construction leads to three-point and four-point correlators that vanish everywhere except for a measure zero hypersurface of celestial coordinates. This is due to the four-dimensional momentum conservation law that constrains the insertion points of the operators associated with massless particles. These correlators are reminiscent of Coulomb gas correlators that, in the absence of background charges, vanish due to charge conservation. We supply the background momentum by coupling Yang-Mills theory to a background dilaton field, with the (complex) dilaton source localized on the celestial sphere. This picture emerges from the physical interpretation of the solutions of the system of differential equations discovered by Banerjee and Ghosh. We show that the solutions can be written as Mellin transforms of the amplitudes evaluated in such a dilaton background. The resultant three-gluon and four-gluon amplitudes are single-valued functions of celestial coordinates enjoying crossing symmetry and all other properties expected from standard CFT correlators. We use them to extract OPEs and compare them with the OPEs extracted from multi-gluon celestial amplitudes without a dilaton background. We perform the conformal block decomposition of the four-gluon single-valued correlator and determine the dimensions, spin and group representations of the entire primary field spectrum of the Yang-Mills sector of CCFT.

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