期刊论文详细信息
Journal of High Energy Physics
Generalized symmetry breaking scales and weak gravity conjectures
Regular Article - Theoretical Physics
Kantaro Ohmori1  Tom Rudelius2  Clay Córdova3 
[1] Department of Physics, The University of Tokyo, 113-0033, Tokyo, Japan;Department of Physics, University of California, Berkeley, 366 Physics North MC 7300, 94720-7300, Berkeley, CA, USA;Enrico Fermi Institute and Kadanoff Center for Theoretical Physics, University of Chicago, 60637, Chicago, IL, USA;
关键词: Effective Field Theories;    Global Symmetries;    Models of Quantum Gravity;    Nonperturbative Effects;   
DOI  :  10.1007/JHEP11(2022)154
 received in 2022-03-14, accepted in 2022-11-16,  发布年份 2022
来源: Springer
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【 摘 要 】

We explore the notion of approximate global symmetries in quantum field theory and quantum gravity. We show that a variety of conjectures about quantum gravity, including the weak gravity conjecture, the distance conjecture, and the magnetic and axion versions of the weak gravity conjecture can be motivated by the assumption that generalized global symmetries should be strongly broken within the context of low-energy effective field theory, i.e. at a characteristic scale less than the Planck scale where quantum gravity effects become important. For example, the assumption that the electric one-form symmetry of Maxwell theory should be strongly broken below the Planck scale implies the weak gravity conjecture. Similarly, the violation of generalized non-invertible symmetries is closely tied to analogs of this conjecture for non-abelian gauge theory. This reasoning enables us to unify these conjectures with the absence of global symmetries in quantum gravity.

【 授权许可】

Unknown   
© The Author(s) 2022

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