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On Measuring Distances in the Quantum Gravity Landscape

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arxiv 2407.02705 v3 pith:QHQ7VGBD submitted 2024-07-02 hep-th

On Measuring Distances in the Quantum Gravity Landscape

classification hep-th
keywords distancecaselambdaenergyfieldgravitymasspotential
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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In this note, we propose a generalized notion of distance between vacua in the theory of a scalar field $\phi$ with scalar potential $V(\phi)$ coupled to gravity. We propose the normalized tension of domain wall connecting different field values, with a varying normalization relative to a local energy scale, as the distance. We show this definition reproduces the usual moduli space distance for zero potential, as well as the $d\propto |\log \Lambda|$ behavior with the vacuum energy $\Lambda$ in the AdS case, previously proposed in the literature. In the case of large AdS we also obtain the expected exponent of mass versus distance in one particular case, when the mass of the light tower is $m\sim \sqrt \Lambda$ and there is a single extra dimension decompactifying. We also discuss the features and shortcomings of alternative but related proposals.

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Cited by 4 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score.

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  3. The CFT Distance Conjecture and Tensionless String Limits in $\mathcal N=2$ Quiver Gauge Theories

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  4. Moduli Space Quantum Mechanics

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