English

The measurement-induced phase transition in strongly disordered spin chains

Disordered Systems and Neural Networks 2025-12-03 v1 Statistical Mechanics Quantum Physics

Abstract

We investigate the dynamics of strongly disordered spin chains in the presence of random local measurements. By studying the transverse-field Ising model with a site-dependent random longitudinal field and an effective ll-bit many-body localized Hamiltonian, we show that the prethermal and MBL regimes are unstable to local measurements along any direction. Any non-zero measurement density induces a volume-law entangled phase with a subsequent phase transition into an area-law state as the measurement rate is further increased. The critical measurement rate pcp_c, where the transition occurs, is exponentially small in the strength of disorder WW and the average overlap between the measurement operator and the local integrals of motion OO as pcexp[αW/(1O2)]p_c \sim \exp[-\alpha W/(1-O^2)]. In the measurement-induced volume-law phase, the saturation time scales as tsLt_s \sim L , contrasting the exponentially slow saturation tseaLt_s \sim e^{aL} in the prethermal and MBL regimes at p=0p = 0.

Keywords

Cite

@article{arxiv.2512.02100,
  title  = {The measurement-induced phase transition in strongly disordered spin chains},
  author = {Yicheng Tang and Pradip Kattel and Arijeet Pal and Emil A. Yuzbashyan and J. H. Pixley},
  journal= {arXiv preprint arXiv:2512.02100},
  year   = {2025}
}

Comments

9 pages, 8 figures

R2 v1 2026-07-01T08:04:29.208Z