Abstract
Abstract
In a quantum theory of gravity, the species scale Λs can be defined as the scale at which corrections to the Einstein action become important or alternatively as codifying the “number of light degrees of freedom”, due to the fact that $$ {\Lambda}_s^{-1} $$
Λ
s
−
1
is the smallest size black hole described by the EFT involving only the Einstein term. In this paper, we check the validity of this picture in diverse dimensions and with different amounts of supersymmetry and verify the expected behavior of the species scale at the boundary of moduli space. This also leads to the evaluation of the species scale in the interior of the moduli space as well as to the computation of the diameter of the moduli space. We also find evidence that the species scale satisfies the bound $$ {\frac{\left|\nabla {\Lambda}_s\right|}{\Lambda_s}}^2\le \frac{1}{d-2} $$
∇
Λ
s
Λ
s
2
≤
1
d
−
2
all over moduli space including the interior.
Publisher
Springer Science and Business Media LLC
Reference63 articles.
1. H. Ooguri and C. Vafa, On the Geometry of the String Landscape and the Swampland, Nucl. Phys. B 766 (2007) 21 [hep-th/0605264] [INSPIRE].
2. S.-J. Lee, W. Lerche and T. Weigand, Emergent strings from infinite distance limits, JHEP 02 (2022) 190 [arXiv:1910.01135] [INSPIRE].
3. M. Etheredge et al., Sharpening the Distance Conjecture in diverse dimensions, JHEP 12 (2022) 114 [arXiv:2206.04063] [INSPIRE].
4. N.B. Agmon, A. Bedroya, M.J. Kang and C. Vafa, Lectures on the string landscape and the Swampland, arXiv:2212.06187 [INSPIRE].
5. G. Dvali, Black Holes and Large N Species Solution to the Hierarchy Problem, Fortsch. Phys. 58 (2010) 528 [arXiv:0706.2050] [INSPIRE].
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