arXiv · 2606.28424
Meson states in `t Hooft model: Hamiltonian approach
Abstract
We point out that the masses of the highly excited bound quark-antiquark states in QCD$_2$ in the infinite $N$ limit may be determined in the framework of a simple quantum-mechanical model with the potential $V(x) = \sigma |x|$. In the ultrarelativistic case, the masses follow the pattern $$ \mu_n^2 \ =\ \frac {g^2 N}{2\pi} n, $$ which coincides with the law derived by `t Hooft by solving the Bethe--Salpeter equation. In the nonrelativistic case, the energy levels follow the asymptotics $\epsilon_n = \mu_n - 2m = Cn^{2/3}$, where the constant $C$ can be determined by solving the `t Hooft equation or alternatively the nonrelativistic Schr\"odinger equation.
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A. V. Smilga. 2026-06-25. Meson states in `t Hooft model: Hamiltonian approach. https://arxiv.org/abs/2606.28424
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