Fractional instantons in 2d $\mathbb{C}P^{N-1}$ model and 4d Yang-Mills theory with 't Hooft twists
Yui Hayashi, Tatsuhiro Misumi, Muneto Nitta, Keisuke Ohashi, Yuya Tanizaki

TL;DR
This paper derives explicit formulas for fractional instantons in the 2D $ ext{CP}^{N-1}$ model with twisted boundary conditions and explores their implications for 4D Yang-Mills theory with 't Hooft twists, revealing fractional topological charges and moduli spaces.
Contribution
It provides a detailed construction of fractional BPS lumps in the $ ext{CP}^{N-1}$ model with twisted boundary conditions and connects these findings to 4D Yang-Mills theory with 't Hooft twists.
Findings
Explicit formulas for fractional instantons derived.
Moduli space characterized as a $ ext{CP}^{Nk+p-1}$-fiber bundle.
Connection established between 2D instantons and 4D Yang-Mills with twists.
Abstract
We derive the explicit formula for fractional BPS lumps (or fractional instantons) in the nonlinear sigma model on a two-dimensional torus under various shift-clock twisted boundary conditions. After regularizing the model by an -component Abelian-Higgs model, those twisted boundary conditions introduce nontrivial 't~Hooft fluxes for the gauge field, and the topological charge becomes fractionalized as . The moduli space is globally determined as the -fiber bundle on a -torus, which is a K\"ahler manifold of complex dimension as predicted by the index theorem. We present two different parametrizations of the moduli space: one of them immediately identifies the small-lump singularity appearing in the limit, while the other makes the modular invariance…
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Taxonomy
TopicsBlack Holes and Theoretical Physics · Quantum Chromodynamics and Particle Interactions · Particle physics theoretical and experimental studies
