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Multi-centered higher spin solutions from W N $$ {mathcal{W}}_N $$ conformal blocks

机译:来自 w n $$ { mathcal {w}} _ n $ $ 保形块

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A bstract Motivated by the question of bulk localization in holography, we study the problem of constructing multi-centered solutions in higher spin gravity which describe point particles in the interior of AdS~(3). In the Chern-Simons formulation these take into account the backreaction after adding Wilson line sources. We focus on chiral solutions where only the left-moving sector is excited. In that case it is possible to choose a gauge where the dynamical variables are a set of Toda fields living in the bulk. The problem then reduces to solving the A N ? 1 $$ {{mathcal{A}}_N}_{-1} $$ Toda equations with delta function sources, which in turn requires solving an associated monodromy problem. We show that this monodromy problem is equivalent to the monodromy problem for a particular W N $$ {mathcal{W}}_N $$ vacuum conformal block at large central charge. Therefore, knowledge of the W N $$ {mathcal{W}}_N $$ vacuum block determines the multi-centered solution. Our calculations go beyond the heavy-light approximation by including the backreaction of all higher spin particles.
机译:通过全息术中批量定位问题激励的虚拟生态,我们研究了在较高旋转重力构建多中心解决方案的问题,该旋转重力描述了ADS内部的点粒子〜(3)。在Chern-Simons制定中,这些在添加威尔逊线来源后考虑到反应。我们专注于手性解决方案,只有左移动部门兴奋。在这种情况下,可以选择动态变量是散装中的一组TODA字段的仪表。那么问题减少了解决A N? 1 $$ {{ mathcal {a}} _ n} _ { - 1} $$到DELTA函数源的$$ TODA方程,反过来需要解决相关的单曲线问题。我们表明,这种单曲调的问题相当于特定W N $$ { mathcal {w}} _n $$真空保险块的单曲线问题。因此,了解W n $$ { mathcal {w}} _n $$真空块确定多居中的解决方案。我们的计算通过包括所有较高旋转颗粒的反应来超越重光近似。

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