On a $\mathbb{Z}_3$-valued discrete topological term in 10d heterotic string theories

IF 4.6 2区 物理与天体物理 Q1 PHYSICS, MULTIDISCIPLINARY
Yuji Tachikawa, Hao Zhang
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引用次数: 0

Abstract

We show that the low-energy effective actions of two ten-dimensional supersymmetric heterotic strings are different by a $\mathbb{Z}_3$-valued discrete topological term even after we turn off the $E_8×E_8$ and $Spin(32)/\mathbb{Z}_2$ gauge fields. This will be demonstrated by considering the inflow of normal bundle anomaly to the respective NS5-branes from the bulk. This result will be used to show further that the $Spin(16)×Spin(16)$ non-tachyonic non-supersymmetric heterotic string has the same non-zero $\mathbb{Z}_3$-valued discrete topological term. We will also explain the relation of our findings to the theory of topological modular forms. The paper is written as a string theory paper, except for an appendix translating the content in mathematical terms. We will explain there that our finding identifies a representative of the $\mathbb{Z}/3$-torsion element of $\pi_{-32}\mathrm{TMF}$ as a particular self-dual vertex operator superalgebra of $c=16$ and how we utilize string duality to arrive at this statement.
关于 10d 异质弦理论中的 $\mathbb{Z}_3$ 值离散拓扑项
我们证明,即使关闭了$E_8×E_8$和$Spin(32)/\mathbb{Z}_2$规场,两个十维超对称异质弦的低能有效作用也会因为一个$\mathbb{Z}_3$值的离散拓扑项而不同。这将通过考虑法向束反常性从体流入各自的 NS5-branes来证明。我们将利用这一结果进一步证明,$Spin(16)×Spin(16)$ 非塔基非超对称异质弦具有相同的非零$\mathbb{Z}_3$值离散拓扑项。我们还将解释我们的发现与拓扑模块形式理论的关系。除了用数学术语翻译内容的附录之外,这篇论文是以弦理论论文的形式撰写的。我们将在附录中解释,我们的发现将 $\pi_{-32}\mathrm{TMF}$ 的 $\mathbb{Z}/3$ 扭转元的一个代表确定为 $c=16$ 的一个特殊自偶顶点算子超代数,以及我们是如何利用弦对偶性得出这一结论的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
SciPost Physics
SciPost Physics Physics and Astronomy-Physics and Astronomy (all)
CiteScore
8.20
自引率
12.70%
发文量
315
审稿时长
10 weeks
期刊介绍: SciPost Physics publishes breakthrough research articles in the whole field of Physics, covering Experimental, Theoretical and Computational approaches. Specialties covered by this Journal: - Atomic, Molecular and Optical Physics - Experiment - Atomic, Molecular and Optical Physics - Theory - Biophysics - Condensed Matter Physics - Experiment - Condensed Matter Physics - Theory - Condensed Matter Physics - Computational - Fluid Dynamics - Gravitation, Cosmology and Astroparticle Physics - High-Energy Physics - Experiment - High-Energy Physics - Theory - High-Energy Physics - Phenomenology - Mathematical Physics - Nuclear Physics - Experiment - Nuclear Physics - Theory - Quantum Physics - Statistical and Soft Matter Physics.
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