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Quantization of anomaly coefficients in 6D N = 1 , 0 $$ mathcal{N}=left(1,;0ight) $$ supergravity

机译:6D n = < / mo> 1 0 < / mn> $$ mathcal {n} = left(1,; 0 右)$$ Suplgravity

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A bstract We obtain new constraints on the anomaly coefficients of 6D N = 1 0 $$ mathcal{N}=left(1,0ight) $$ supergravity theories using local and global anomaly cancellation conditions. We show how these constraints can be strengthened if we assume that the theory is well-defined on any spin space-time with an arbitrary gauge bundle. We distinguish the constraints depending on the gauge algebra only from those depending on the global structure of the gauge group. Our main constraint states that the coefficients of the anomaly polynomial for the gauge group G should be an element of 2H_(4)(BG; ? ) ? Λ~( S )where Λ~( S )is the unimodular string charge lattice. We show that the constraints in their strongest form are realized in F-theory compactifications. In the process, we identify the cocharacter lattice, which determines the global structure of the gauge group, within the homology lattice of the compactification manifold.
机译:Bstract我们在6d n = 1 0 $$$$$$$ left(1,0 右)$$ Supergravity理论上使用本地和全球异常取消条件的异常数据,获得新的约束。 如果假设该理论在任何带有任意计束的任何旋转空间时间内明确定义,我们会展示这些限制如何加强这些约束。 我们根据规格代数区分约束,根据规范组的全球结构,仅根据那些规格代数。 我们的主要约束指出,规模组G的异常多项式的系数应该是2H_(4)(BG;?)的元素? λ〜(s)其中λ〜(s)是单模弦电荷晶格。 我们表明,在F理论调整中实现了最强大形式的约束。 在该过程中,我们识别Cofachracter格,它在压缩歧管的同源物格中确定仪表组的全局结构。

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