Generation of Volume-Law Entanglement by Local-Measurement-Only Quantum Dynamics
arXiv:2509.14329 · doi:10.1103/7hx8-2wrj
Abstract
Repeated local measurements typically have adversarial effects on entangling unitary dynamics, as local measurements usually degrade entanglement. However, recent works on measurement-only dynamics have shown that strongly entangled states can be generated solely through non-commuting random multi-site and multi-spin projective measurements. In this work, we explore a generalized measurement setup in a system without intrinsic unitary dynamics and show that volume-law entangled states can be generated through local, non-random, yet non-commuting measurements. Specifically, we construct a one-dimensional model comprising a main fermionic chain and an auxiliary (ancilla) chain, where generalized measurements are performed by locally coupling the system to detector qubits. Our results demonstrate that long-time states with volume-law entanglement or mutual information are generated between different parts of the main chain purely through non-unitary measurement dynamics. Remarkably, we find that such large-entanglement generation can be achieved using only the measurements of one-body operators. Moreover, we show that measurements of non-local higher-body operators can be used to control and reduce entanglement generation by introducing kinetic constraints to the dynamics. We discuss the statistics of entanglement measures along the quantum trajectories, the approach to stationary distributions of entanglement or long-time steady states, and the associated notions of limited ergodicity in the measurement-only dynamics. Our findings highlight the potential of non-random measurement protocols for controlled entanglement generation and the study of non-unitary many-body dynamics.
32 pages, 30 Figures including Appendices
References in corpus (61)
- Area laws in quantum systems: mutual information and correlations
- Quantum feedback control of a superconducting qubit: Persistent Rabi oscillations
- Random Quantum Circuits
- Entanglement transition in a monitored free fermion chain -- from extended criticality to area law
- Entanglement phase transitions in measurement-only dynamics
- Mapping the optimal route between two quantum states
- Measurement and entanglement phase transitions in all-to-all quantum circuits, on quantum trees, and in Landau-Ginsburg theory
- Measurement-induced quantum criticality under continuous monitoring
- Experimental Realization of a Measurement-Induced Entanglement Phase Transition on a Superconducting Quantum Processor
- Entanglement Transitions from Stochastic Resetting of Non-Hermitian Quasiparticles
- SYK meets non-Hermiticity II: measurement-induced phase transition
- Entanglement Transition in the Projective Transverse Field Ising Model
- Emergent conformal symmetry in non-unitary random dynamics of free fermions
- Universality of entanglement transitions from stroboscopic to continuous measurements
- Growth of entanglement entropy under local projective measurements
- Measurement-induced entanglement transitions in many-body localized systems
- Topological order and criticality in (2+1)D monitored random quantum circuits
- Measurement-induced dynamics of many-body systems at quantum criticality
- Theory of free fermions under random projective measurements
- Entanglement Negativity at Measurement-Induced Criticality
- Finite Size Scaling of Mutual Information: A Scalable Simulation
- Topological transitions with continuously monitored free fermions
- Nonlinear sigma models for monitored dynamics of free fermions
- Entanglement entropy scaling transition under competing monitoring protocols
- Deterministic constant-depth preparation of the AKLT state on a quantum processor using fusion measurements
- Measurement-induced phase transition for free fermions above one dimension
- Disordered monitored free fermions
- Entanglement transitions with free fermions
- Topology, criticality, and dynamically generated qubits in a stochastic measurement-only Kitaev model
- Entanglement Steering in Adaptive Circuits with Feedback
- Entangled multiplets and unusual spreading of quantum correlations in a continuously monitored tight-binding chain
- Majorana Loop Models for Measurement-Only Quantum Circuits
- Transport and entanglement growth in long-range random Clifford circuits
- State Preparation on Quantum Computers via Quantum Steering
- High-fidelity realization of the AKLT state on a NISQ-era quantum processor
- Entanglement phases, localization and multifractality of monitored free fermions in two dimensions
- Measurement-induced transitions beyond Gaussianity: a single particle description
- Measurement-induced transitions for interacting fermions
- Measurement-driven navigation in many-body Hilbert space: Active-decision steering
- Optimized Steering: Quantum State Engineering and Exceptional Points
- Evolution of many-body systems under ancilla quantum measurements
- Absence of measurement-induced entanglement transition due to feedback-induced skin effect
- Quantum state preparation via engineered ancilla resetting
- Field theory of monitored, interacting fermion dynamics with charge conservation
- Engineering unsteerable quantum states with active feedback
- Generalized Zeno effect and entanglement dynamics induced by fermion counting
- Dissipative Preparation of Many-Body Quantum States: Towards Practical Quantum Advantage
- Localization, fractality, and ergodicity in a monitored qubit
- Quantum state engineering by steering in the presence of errors
- Negative tripartite mutual information after quantum quenches in integrable systems
- Monogamy of quantum entanglement
- Universal structure of measurement-induced information in many-body ground states
- Dilute measurement-induced cooling into many-body ground states
- Stable measurement-induced Floquet enriched topological order
- Ancilla quantum measurements on interacting chains: Sensitivity of entanglement dynamics to the type and concentration of detectors
- Steering-induced phase transition in measurement-only quantum circuits
- Phase transition and evidence of fast-scrambling phase in measurement-only quantum circuit
- Universal Stochastic Equations of Monitored Quantum Dynamics
- Measurement-induced Lévy flights of quantum information
- Controlling measurement-induced phase transitions with tunable detector coupling
- Efficient preparation of the AKLT State with Measurement-based Imaginary Time Evolution