Prethermalization without temperature
arXiv:1908.10371 · doi:10.1103/PhysRevX.10.021046
Abstract
While a clean driven system generically absorbs energy until it reaches `infinite temperature', it may do so very slowly exhibiting what is known as a prethermal regime. Here, we show that the emergence of an additional approximately conserved quantity in a periodically driven (Floquet) system can give rise to an analogous long-lived regime. This can allow for non-trivial dynamics, even from initial states that are at a high or infinite temperature with respect to an effective Hamiltonian governing the prethermal dynamics. We present concrete settings with such a prethermal regime, one with a period-doubled (time-crystalline) response. We also present a direct diagnostic to distinguish this prethermal phenomenon from its infinitely long-lived many-body localised cousin. We apply these insights to a model of the recent NMR experiments by Rovny et al., [Phys. Rev. Lett. 120, 180603 (2018)] which, intriguingly, detected signatures of a Floquet time crystal in a clean three-dimensional material. We show that a mild but subtle variation of their driving protocol can increase the lifetime of the time-crystalline signal by orders of magnitude.
v2- published version; discussions expanded and clarified
References in corpus (9)
- Many body localization and thermalization in quantum statistical mechanics
- Localization of interacting fermions at high temperature
- Many-body localization edge in the random-field Heisenberg chain
- Many body localization in Heisenberg XXZ magnet in a random field
- Phenomenology of fully many-body-localized systems
- Equilibrium states of generic quantum systems subject to periodic driving
- Many-body localization in periodically driven systems
- Periodically driven ergodic and many-body localized quantum systems
- Absence of dynamical localization in interacting driven systems
Cited by in corpus (53)
- Nonthermal pathways to ultrafast control in quantum materials
- Colloquium: Quantum and Classical Discrete Time Crystals
- Many-body physics in the NISQ era: quantum programming a discrete time crystal
- Classical Prethermal Phases of Matter
- Dynamical Freezing and Scar Points in Strongly Driven Floquet Matter: Resonance vs Emergent Conservation Laws
- Random multipolar driving: tunably slow heating through spectral engineering
- Analytic approaches to periodically driven closed quantum systems: Methods and Applications
- Condensed Matter Physics in Time Crystals
- Discrete time-crystalline response stabilized by domain-wall confinement
- Classical approaches to prethermal discrete time crystals in one, two, and three dimensions
- Discrete time crystal enabled by Stark many-body localization
- To heat or not to heat: time crystallinity and finite-size effects in clean Floquet systems
- Fermi's golden rule for heating in strongly driven Floquet systems
- Simulation of quantum many-body dynamics with Tensor Processing Units: Floquet prethermalization
- Statistical Mechanics of Floquet Quantum Matter: Exact and Emergent Conservation Laws
- Discrete time crystals enforced by Floquet-Bloch scars
- Drive-induced many-body localization and coherent destruction of Stark many-body localization
- From ETH to algebraic relaxation of OTOCs in systems with conserved quantities
- Homogeneous Floquet time crystal from weak ergodicity breaking
- Prethermal quasiconserved observables in Floquet quantum systems
- Floquet Prethermal Phase Protected by U(1) Symmetry on a Superconducting Quantum Processor
- Polynomial filter diagonalization of large Floquet unitary operators
- Stroboscopic aliasing in long-range interacting quantum systems
- Prethermalization and entanglement dynamics in interacting topological pumps
- Effective response theory for Floquet topological systems
- Analytical theory of cat scars with discrete time crystalline dynamics in Floquet systems
- Universality classes of thermalization for mesoscopic Floquet systems
- Emergent symmetries in prethermal phases of periodically driven quantum systems
- Prethermal nematic order and staircase heating in a driven frustrated Ising magnet with dipolar interactions
- Slow relaxation of out-of-time-ordered correlators in interacting integrable and nonintegrable spin-1/2 XYZ chains
- Theory of metastable states in many-body quantum systems
- Criticality and Rigidity of Dissipative Discrete Time Crystals in Solids
- Robust effective ground state in a nonintegrable Floquet quantum circuit
- Long-lived coherence in driven spin systems: from two to infinite spatial dimensions
- Clean two-dimensional Floquet time-crystal
- Quantum state preparation of topological chiral spin liquids via Floquet engineering
- Classical Phase Space Crystals in an Open Environment
- Prethermalization with negative specific heat
- A metronome spin stabilizes time-crystalline dynamics
- Engineering Hierarchical Symmetries
- Floquet prethermalization with lifetime exceeding 90s in a bulk hyperpolarized solid
- Stable time rondeau crystals in dissipative many-body systems
- Discrete time crystals enhanced by Stark potentials in Rydberg atom arrays
- Random initial data and average shock time in the Fermi-Pasta-Ulam-Tsingou chain
- Infinite temperature spin dynamics in the asymmetric Hatsugai-Kohmoto model
- Electronic Mechanism that Quenches Field-Driven Heating as Illustrated with the Static Holstein Model
- Nonperturbative decay of bipartite discrete time crystals
- The robustness condition for general disordered discrete time crystals, and subspace-thermal DTCs from phase transitions between different n-tuple DTCs
- Following Floquet states in high-dimensional Hilbert spaces
- Controlling discrete time crystals via single-site operations in zero-field diamond quantum simulators
- Detuning the Floquet anomalous chiral spin liquid
- Fock space prethermalization and time-crystalline order on a quantum processor
- Unpolarized prethermal discrete time crystal