4.7 Article

The Weak Gravity Conjecture and emergence from an ultraviolet cutoff

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EUROPEAN PHYSICAL JOURNAL C
卷 78, 期 4, 页码 -

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SPRINGER
DOI: 10.1140/epjc/s10052-018-5811-3

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资金

  1. Perimeter Institute for Theoretical Physics
  2. Government of Canada through the Department of Innovation, Science and Economic Development
  3. Province of Ontario through the Ministry of Research, Innovation and Science
  4. DOE Grant [DE-SC0013607]
  5. NASA ATP Grant [NNX16AI12G]
  6. Carl P. Feinberg Founders' Circle Membership
  7. NSF Grant [PHY-1314311]
  8. U.S. Department of Energy (DOE) [DE-SC0013607] Funding Source: U.S. Department of Energy (DOE)
  9. NASA [NNX16AI12G, 903810] Funding Source: Federal RePORTER

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We study ultraviolet cutoffs associated with the Weak Gravity Conjecture (WGC) and Sublattice Weak Gravity Conjecture (sLWGC). There is a magnetic WGC cutoff at the energy scale eG(N)(-1/2) with an associated sLWGC tower of charged particles. A more fundamental cutoff is the scale at which gravity becomes strong and field theory breaks down entirely. By clarifying the nature of the sLWGC for non-abelian gauge groups we derive a parametric upper bound on this strong gravity scale for arbitrary gauge theories. Intriguingly, we show that in theories approximately saturating the sLWGC, the scales at which loop corrections from the tower of charged particles to the gauge boson and graviton propagators become important are parametrically identical. This suggests a picture in which gauge fields emerge from the quantum gravity scale by integrating out a tower of charged matter fields. We derive a converse statement: if a gauge theory becomes strongly coupled at or below the quantum gravity scale, the WGC follows. We sketch some phenomenological consequences of the UV cutoffs we derive.

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