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Twisting the Hagedorn temperature in planar N=4\mathcal{N}=4 super Yang-Mills

Published 5 Dec 2025 in hep-th | (2512.05810v1)

Abstract: We consider planar N=4\mathcal{N}=4 super Yang-Mills at finite temperature with chemical potentials that couple either to the RR-charges or the spins of the operators. We find expressions for the Hagedorn temperatures at both zero coupling by explicitly counting states, and at strong coupling using the string theory dual. We then apply the quantum spectral curve (QSC) to this problem, which adds additional twists to the QQ-functions. For a single chemical potential μμ coupled to one of the RR-charges, we find the analytic weak-coupling Hagedorn temperature to one-loop order for any value of μμ, and to two-loop order for μ=1/2μ=1/2. We then solve the QSC numerically, showing that at strong coupling there is good agreement with the string theory prediction to order 1/λ<sup>1/41/λ<sup>{1/4}. This provides further evidence for a recent conjecture of Harmark for the form of the world-sheet zero-point shift. We also use the QSC to find the analytic one-loop correction to the Hagedorn temperature with non-zero chemical potentials coupled to the spins.

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