28 July 2024 to 3 August 2024
Europe/London timezone

Numerical evidence for a CP broken deconfined phase at $\theta =\pi$ in 4D SU(2) Yang-Mills through simulations at imaginary $\theta$

29 Jul 2024, 12:55
20m
Talk Vacuum Structure and Confinement Vacuum structure and confinement

Speaker

Mitsuaki Hirasawa (University of Milano-Bicocca)

Description

We investigate the possibility of the spontaneous breaking of CP symmetry in 4D SU(2) Yang-Mills at $\theta=\pi$, which has recently attracted much attention in the context of the higher-form symmetry and the 't Hooft anomaly matching condition. Here we provide a numerical evidence that the CP symmetry is indeed spontaneously broken at low temperature and it gets restored above the deconfining temperature at $\theta=\pi$, which is consistent with the anomaly matching condition and yet differs from the situation predicted in the large-$N$ limit. We avoid the severe sign problem by performing simulations at imaginary $\theta$. Then we estimate the relation between the critical temperature of the CP restoration and that of deconfinement at $\theta=\pi$ by analytic continuation.

Primary authors

Mitsuaki Hirasawa (University of Milano-Bicocca) Kohta Hatakeyama (Kyoto University) Masazumi Honda (RIKEN iTHEMS) Dr Akira Matsumoto (Yukawa Institute for Theoretical Physics, Kyoto University) Jun Nishimura (KEK, SOKENDAI) Atis Yosprakob (Niigata University)

Presentation materials