Exact Hidden Markovian Dynamics in Quantum Circuits
arXiv:2403.14807 · doi:10.1103/PhysRevLett.133.170402
Abstract
Characterizing nonequilibrium dynamics in quantum many-body systems is a challenging frontier of physics. In this Letter, we systematically construct solvable nonintegrable quantum circuits that exhibit exact hidden Markovian subsystem dynamics. This feature thus enables accurately calculating local observables for arbitrary evolution time. Utilizing the influence matrix method, we show that the influence of the time-evolved global system on a finite subsystem can be analytically described by sequential, time-local quantum channels acting on the subsystem with an ancilla of finite Hilbert space dimension. The realization of exact hidden Markovian property is facilitated by a solvable condition on the underlying two-site gates in the quantum circuit. We further present several concrete examples with varying local Hilbert space dimensions to demonstrate our approach.
7+11 pages, 2+1 figures
References in corpus (62)
- Thermalization and its mechanism for generic isolated quantum systems
- Nonequilibrium dynamics of closed interacting quantum systems
- Many body localization and thermalization in quantum statistical mechanics
- Efficient classical simulation of slightly entangled quantum computations
- Many-body localization, thermalization, and entanglement
- Real time evolution using the density matrix renormalization group
- Non-Markovian dynamics in open quantum systems
- Matrix Product Density Operators: Simulation of finite-T and dissipative systems
- Quantum Thermodynamics
- Quantum Many-Body Scars and Weak Breaking of Ergodicity
- Quantum Many-Body Scars and Hilbert Space Fragmentation: A Review of Exact Results
- A geometric theory of non-local two-qubit operations
- Exact Spectral Form Factor in a Minimal Model of Many-Body Quantum Chaos
- Concepts of quantum non-Markovianity: a hierarchy
- Non-Markovian quantum processes: complete framework and efficient characterisation
- Valence Bond Solids for Quantum Computation
- Exact Correlation Functions for Dual-Unitary Lattice Models in 1+1 Dimensions
- Operational Markov condition for quantum processes
- Non-perturbative treatment of non-Markovian dynamics of open quantum systems
- Quantum Many-Body Scars: A Quasiparticle Perspective
- Exact dynamics in dual-unitary quantum circuits
- Environmental dynamics, correlations, and the emergence of noncanonical equilibrium states in open quantum systems
- Matrix Product States for dynamical simulation of infinite chains
- Condition for macroscopic realism beyond the Leggett-Garg inequalities
- Quantum stochastic processes and quantum non-Markovian phenomena
- Pseudomodes as an effective description of memory: Non-Markovian dynamics of two-state systems in structured reservoirs
- Completely Positive Divisibility Does Not Mean Markovianity
- Scrambling in Random Unitary Circuits: Exact Results
- Exact thermalization dynamics in the "Rule 54" Quantum Cellular Automaton
- Collision model for non-Markovian quantum dynamics
- Exact emergent quantum state designs from quantum chaotic dynamics
- Diagonalizing transfer matrices and matrix product operators: a medley of exact and computational methods
- Influence matrix approach to many-body Floquet dynamics
- Machine learning non-Markovian quantum dynamics
- System-environment correlations and Markovian embedding of quantum non-Markovian dynamics
- Optimized auxiliary oscillators for the simulation of general open quantum systems
- Purifications of multipartite states: limitations and constructive methods
- Matrix product operators and states: NP-hardness and undecidability
- Tensor network techniques for the computation of dynamical observables in 1D quantum spin systems
- Dynamical purification and the emergence of quantum state designs from the projected ensemble
- Simulation complexity of open quantum dynamics: Connection with tensor networks
- On quantum non-signalling boxes
- Temporal entanglement, quasiparticles and the role of interactions
- Operator Entanglement in Local Quantum Circuits II: Solitons in Chains of Qubits
- Connecting Entanglement in Time and Space: Improving the Folding Algorithm
- Computational power of one- and two-dimensional dual-unitary quantum circuits
- Constructing Tensor Network Influence Functionals for General Quantum Dynamics
- Maximal entanglement velocity implies dual unitarity
- Temporal Entanglement in Chaotic Quantum Circuits
- Scaling of temporal entanglement in proximity to integrability
- Many-body quantum state diffusion for non-Markovian dynamics in strongly interacting systems
- Exact dynamics in dual-unitary quantum circuits with projective measurements
- Many Body Quantum Chaos and Dual Unitarity Round-a-Face
- Light cone tensor network and time evolution
- Hierarchical generalization of dual unitarity
- Circuits of space and time quantum channels
- Exact quench dynamics of the Floquet quantum East model at the deterministic point
- Ternary unitary quantum lattice models and circuits in dimensions
- Quantum information spreading in generalised dual-unitary circuits
- Non-Markovianity, information backflow and system-environment correlation for open-quantum-system processes
- From dual-unitary to biunitary: a 2-categorical model for exactly-solvable many-body quantum dynamics
- Collisional open quantum dynamics with a generally correlated environment: Exact solvability in tensor networks
Cited by in corpus (8)
- Exactly solvable many-body dynamics from space-time duality
- Dual-isometric Projected Entangled Pair States
- Hopf algebras and solvable unitary circuits
- Efficient post-selection in light-cone correlations of monitored quantum circuits
- Entanglement dynamics and Page curves in random permutation circuits
- Learning the non-Markovian features of subsystem dynamics
- Diagnosing chaos with projected ensembles of process tensors
- Exact large deviations and emergent long-range correlations in sequential quantum East circuits