English

Purification Timescales in Monitored Fermions

Statistical Mechanics 2025-01-22 v1 Disordered Systems and Neural Networks Strongly Correlated Electrons Quantum Physics

Abstract

We investigate the crucial role played by a global symmetry in the purification timescales and the phase transitions of monitored free fermionic systems separating a mixed and a pure phase. Concretely, we study Majorana and Dirac circuits with Z2\mathbb{Z}_2 and U(1) symmetries, respectively. In the first case, we demonstrate the mixed phase of LL sites has a purification timescale that scales as τPLlnL\tau_P\sim L \ln L . At 1tτP1\ll t\ll \tau_P the system attains a finite residual entropy, that we use to unveil the critical properties of the purification transition. In contrast, free fermions with U(1) manifest a sublinear purification timescale at any measurement rate and an apparent Berezinskii-Kosterlitz-Thouless criticality. We find the mixed phase is characterized by τPLα(p)\tau_P\sim L^{\alpha(p)}, with a continuously varying exponent α(p)<1\alpha(p)<1.

Cite

@article{arxiv.2303.12216,
  title  = {Purification Timescales in Monitored Fermions},
  author = {Hugo Lóio and Andrea De Luca and Jacopo De Nardis and Xhek Turkeshi},
  journal= {arXiv preprint arXiv:2303.12216},
  year   = {2025}
}

Comments

7 pgase, 3 figures, 3 pages of supplementary material

R2 v1 2026-06-28T09:27:27.080Z