Exact large deviations and emergent long-range correlations in sequential quantum East circuits
arXiv:2509.07182 · doi:10.1103/72kx-56lt
Abstract
Exploiting quantum measurements is a promising route for preparation of correlated quantum states. We use methods from large deviation theory to solve this problem exactly for a specific system: the deterministic quantum East circuit with boundary measurements. We show that conditioning on measurement outcomes generates a long-range correlated state, despite typical trajectories being trivial. We derive the channel that optimally realizes the rare measurement trajectories, and establish a formal connection with the Petz recovery (time-reversal) map. We compute one- and two-point correlation functions in the conditioned state, revealing finite two-body correlations at arbitrarily large separations, and an underlying fractal structure, related to the Sierpiński triangle. These results demonstrate explicitly how boundary measurements can be used to control bulk properties of a quantum system.
References in corpus (50)
- The large deviation approach to statistical mechanics
- Nonequilibrium fluctuations, fluctuation theorems, and counting statistics in quantum systems
- Matrix Product States and Projected Entangled Pair States: Concepts, Symmetries, and Theorems
- Measurement-Induced Phase Transitions in the Dynamics of Entanglement
- Quantum error correction below the surface code threshold
- Measurement-driven entanglement transition in hybrid quantum circuits
- High-fidelity parallel entangling gates on a neutral atom quantum computer
- Random Quantum Circuits
- Sequential generation of entangled multi-qubit states
- Thermodynamics of Quantum Jump Trajectories
- Quantum collision models: open system dynamics from repeated interactions
- Measurement-induced entanglement and teleportation on a noisy quantum processor
- Unitary circuits of finite depth and infinite width from quantum channels
- Introduction to dynamical large deviations of Markov processes
- Unravelling the large deviation statistics of Markovian open quantum systems
- Aspects of non-equilibrium in classical and quantum systems: slow relaxation and glasses, dynamical large deviations, quantum non-ergodicity, and open quantum dynamics
- Hyperuniformity and phase separation in biased ensembles of trajectories for diffusive systems
- Sequential Generation of Matrix-Product States in Cavity QED
- Ergodicity and large deviations in physical systems with stochastic dynamics
- Quantum Circuits assisted by LOCC: Transformations and Phases of Matter
- Anomalous Subdiffusion from Subsystem Symmetries
- Nishimori's cat: stable long-range entanglement from finite-depth unitaries and weak measurements
- Making rare events typical in Markovian open quantum systems
- Benchmarking a trapped-ion quantum computer with 30 qubits
- Topological Order from Measurements and Feed-Forward on a Trapped Ion Quantum Computer
- Temporal entanglement, quasiparticles and the role of interactions
- Single-ancilla ground state preparation via Lindbladians
- Quantum Cellular Automata, Tensor Networks, and Area Laws
- Sequentially generated states for the study of two dimensional systems
- Exact large deviation statistics and trajectory phase transition of a deterministic boundary driven cellular automaton
- Entanglement Dynamics in Monitored Systems and the Role of Quantum Jumps
- Reversing Lindblad Dynamics via Continuous Petz Recovery Map
- Scalable, high-fidelity all-electronic control of trapped-ion qubits
- Hierarchical generalization of dual unitarity
- Localised Dynamics in the Floquet Quantum East Model
- Exact quench dynamics of the Floquet quantum East model at the deterministic point
- Thermodynamics of quantum trajectories on a quantum computer
- Dynamical simulations of many-body quantum chaos on a quantum computer
- Exact pre-transition effects in kinetically constrained circuits: dynamical fluctuations in the Floquet-East model
- Dynamics of Pseudoentanglement
- Exact Hidden Markovian Dynamics in Quantum Circuits
- Microscopic biasing of discrete-time quantum trajectories
- Entanglement dynamics in U(1) symmetric hybrid quantum automaton circuits
- Quantum Bayes' rule and Petz transpose map from the minimum change principle
- Hopf algebras and solvable unitary circuits
- Efficient post-selection in light-cone correlations of monitored quantum circuits
- Space-time correlations in monitored kinetically constrained discrete-time quantum dynamics
- Entanglement dynamics and Page curves in random permutation circuits
- Random Permutation Circuits Beyond Qubits are Quantum Chaotic
- Bridging Classical and Quantum Information Scrambling with the Operator Entanglement Spectrum