Differential Cohomotopy implies intersecting brane observables via configuration spaces and chord diagrams

IF 1 4区 物理与天体物理 Q3 PHYSICS, MATHEMATICAL Advances in Theoretical and Mathematical Physics Pub Date : 2019-12-22 DOI:10.4310/atmp.2022.v26.n4.a4
H. Sati, U. Schreiber
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引用次数: 20

Abstract

We introduce a differential refinement of Cohomotopy cohomology theory, defined on Penrose diagram spacetimes, whose cocycle spaces are unordered configuration spaces of points. First we prove that brane charge quantization in this differential 4-Cohomotopy theory implies intersecting p/(p+2)-brane moduli given by ordered configurations of points in the transversal 3-space. Then we show that the higher (co-)observables on these brane moduli, conceived as the (co-)homology of the Cohomotopy cocycle space, are given by weight systems on horizontal chord diagrams and reflect a multitude of effects expected in the microscopic quantum theory of Dp/D(p+2)-brane intersections: condensation to stacks of coincident branes and their Chan-Paton factors, BMN matrix model and fuzzy funnel states, M2-brane 3-algebras, the Hanany-Witten rules, AdS3-gravity observables, supersymmetric indices of Coulomb branches as well as gauge/gravity duality between all these. We discuss this in the context of the hypothesis that the M-theory C-field is charge-quantized in Cohomotopy theory.
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微分上同伦意味着通过构形空间和弦图相交膜观测
引入了在彭罗斯图时空上定义的上同伦上同调理论的微分改进,彭罗斯图时空的上环空间是点的无序位形空间。首先,我们证明了在这个微分4-上同伦理论中膜电荷量子化意味着相交的p/(p+2)-膜模由横截面3空间中点的有序构型给出。然后,我们证明了这些膜模上的高(共)观测值,被认为是上同伦共环空间的(共)同调,是由水平弦图上的权重系统给出的,并反映了Dp/D(p+2)-膜相交的微观量子理论中预期的众多效应:重叠膜堆的凝聚及其Chan-Paton因子,BMN矩阵模型和模糊漏斗态,m2 -膜3-代数,hananyi - witten规则,ads3 -重力可观测值,库仑分支的超对称指标以及它们之间的规范/重力对偶性。我们在上同伦理论中假设m理论c场是带电量子化的背景下讨论这个问题。
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来源期刊
Advances in Theoretical and Mathematical Physics
Advances in Theoretical and Mathematical Physics 物理-物理:粒子与场物理
CiteScore
2.20
自引率
6.70%
发文量
0
审稿时长
>12 weeks
期刊介绍: Advances in Theoretical and Mathematical Physics is a bimonthly publication of the International Press, publishing papers on all areas in which theoretical physics and mathematics interact with each other.
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