arXiv · 2112.14130
Can the energy bound $E \geq 0$ imply supersymmetry?
Abstract
We utilize the integrality conjecture to show that the torus partition function of a fermionic rational conformal theory in the Ramond-Ramond sector becomes a constant when the bound $h^R \ge \frac{c}{24}$ is satisfied, where $h^R$ denote the conformal weights of Ramond states and $c$ is the central charge. The constant-valued Ramond-Ramond partition function strongly suggests the presence of supersymmetry unless a given theory has free fermions. The lower bound $h^R \ge \frac{c}{24}$ can then be identified with the unitarity bound of $\mathcal{N}=1$ supersymmetry. We thus propose that, for rational CFTs without free fermions, $(h^R-c/24) \geq 0$ can imply supersymmetry.
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Jin-Beom Bae, Zhihao Duan, Sungjay Lee. 2021-12-28. Can the energy bound $E \geq 0$ imply supersymmetry?. https://arxiv.org/abs/2112.14130
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