paper

Continuous Reset-Induced Phase Transition in Measurement-Free Random Quantum Circuits

arXiv:2604.25640

Abstract

We study a random unitary quantum circuit with only reset channels, which has high feasibility for real quantum devices. In particular, we investigate the many-body statistical physics properties, ``reset-induced'' entanglement phase transitions comparing the classical statistical picture in the large ``'' limit of qudits. In the property of the reset-induced phase transition the parameter of qudit is essential. That is, the transition properties induced by the reset channel significantly depend on . We numerically elucidate this statement employing efficient stabilizer circuit simulations for . Specifically, critical fluctuations that grow with system size are observed near the transition point, and the finite-size scaling analyses yield data collapse consistent with a continuous mixed-state phase transition.} This behavior differs from expectations based on the classical statistical mapping in the large- limit.

25 pages,12 figures. Revised version: updated to include new results shown in Fig3,4,5,8