Spatial structure of multipartite entanglement at measurement induced phase transitions
quant-ph
Submitted: 2025-09-15
Updated: 2026-09-03
Comments: 23 pages, 16 figures
Journal ref: Quantum 10, 2211 (2026)
DOI: 10.22331/q-2026-09-18-2211
License: http://creativecommons.org/licenses/by/4.0/
The gist: We study multiparty entanglement near measurement induced phase transitions (MIPTs), which arise in ensembles of local quantum circuits built with unitaries and measurements.
Terminology
Abstract
We study multiparty entanglement near measurement induced phase transitions (MIPTs), which arise in ensembles of local quantum circuits built with unitaries and measurements. In contrast to equilibrium quantum critical transitions, where entanglement is short-ranged, MIPTs possess long-range k-party genuine multiparty entanglement (GME) characterized by an infinite hierarchy of entanglement exponents for k>=2. First, we represent the average spread of entanglement with "entanglement clusters", and use them to conjecture general exponent relations: 1) classical dominance, 2) monotonicity, 3) subadditivity. We then introduce measure-weighted graphs to construct such clusters in general circuits. Second, we obtain the exact entanglement exponents for a 1d MIPT in a measurement-only circuit that maps to percolation by exploiting non-unitary conformal field theory. The exponents, which we numerically verify, obey the inequalities. We also extend the construction to a 2d MIPT that maps to classical 3d percolation, and numerically find the first entanglement exponents. Our results provide a firm ground to understand the multiparty entanglement of MIPTs, and more general ensembles of quantum circuits.
Sources
- The Fate of Entanglement
- Entanglement Negativity at Measurement-Induced Criticality
- Long-range multipartite entanglement near measurement-induced transitions
- A sharp phase transition in linear cross-entropy benchmarking
- Quantum supremacy and random circuits
- The Heisenberg Representation of Quantum Computers
- Multiparty Entanglement Microscopy of Quantum Ising models in 1d, 2d and 3d
- Entanglement Transition in the Projective Transverse Field Ising Model
- Multipartite entanglement structure of monitored quantum circuits
- Bond and Site Percolation in Three Dimensions
- Taming multiparty entanglement at measurement-induced phase transitions
- Measurement Protected Quantum Phases
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