Double Copy From Tensor Products of Metric BV■-Algebras

IF 5.6 3区 物理与天体物理 Q1 PHYSICS, MULTIDISCIPLINARY Fortschritte Der Physik-Progress of Physics Pub Date : 2024-11-12 DOI:10.1002/prop.202300270
Leron Borsten, Branislav Jurčo, Hyungrok Kim, Tommaso Macrelli, Christian Saemann, Martin Wolf
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Abstract

Field theories with kinematic Lie algebras, such as field theories featuring color–kinematics duality, possess an underlying algebraic structure known as BV-algebra. If, additionally, matter fields are present, this structure is supplemented by a module for the BV-algebra. The authors explain this perspective, expanding on our previous work and providing many additional mathematical details. The authors also show how the tensor product of two metric BV-algebras yields the action of a new syngamy field theory, a construction which comprises the familiar double copy construction. As examples, the authors discuss various scalar field theories, Chern–Simons theory, self-dual Yang–Mills theory, and the pure spinor formulations of both M2-brane models and supersymmetric Yang–Mills theory. The latter leads to a new cubic pure spinor action for 10-dimensional supergravity. A homotopy-algebraic perspective on colour–flavour-stripping is also given, obtain a new restricted tensor product over a wide class of bialgebras, and it is also show that any field theory (even one without colour–kinematics duality) comes with a kinematic L $L_\infty$ -algebra.

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具有运动学李代数的场论,例如具有色彩运动学对偶性的场论,拥有一种称为 BV■-algebra 的基本代数结构。如果还存在物质场,这一结构将由 BV■-代数的模块来补充。作者解释了这一观点,扩展了我们之前的工作,并提供了许多额外的数学细节。作者还展示了两个度量 BV■-代数的张量乘积如何产生新的共轭场论作用,这种构造包括我们熟悉的双拷贝构造。作为例子,作者讨论了各种标量场理论、Chern-Simons 理论、自双杨-米尔斯理论以及 M2rane 模型和超对称杨-米尔斯理论的纯旋子形式。后者为 10 维超引力带来了一种新的立方纯旋子作用。我们还给出了色味剥离的同位代数视角,得到了一个新的限制张量乘,并证明了任何场论(即使是没有色运动学对偶性的场论)都有一个运动学L ∞ $L_infty$ -代数。
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来源期刊
CiteScore
6.70
自引率
7.70%
发文量
75
审稿时长
6-12 weeks
期刊介绍: The journal Fortschritte der Physik - Progress of Physics is a pure online Journal (since 2013). Fortschritte der Physik - Progress of Physics is devoted to the theoretical and experimental studies of fundamental constituents of matter and their interactions e. g. elementary particle physics, classical and quantum field theory, the theory of gravitation and cosmology, quantum information, thermodynamics and statistics, laser physics and nonlinear dynamics, including chaos and quantum chaos. Generally the papers are review articles with a detailed survey on relevant publications, but original papers of general interest are also published.
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