Floquet scars and prethermal fragmentation in a driven spin-one chain
Abstract
We study the periodic dynamics of a spin-one chain driven using a square-pulse protocol with amplitude and frequency . The Hamiltonian of the spin chain hosts a thermodynamically large number of -valued conserved quantities on the links . This allows us to study the Floquet dynamics of this chain within a given sector with fixed values of . For the sector with all , we find signatures of quantum many-body scar states for ; they lead to oscillatory dynamics and fidelity revival for specific initial states. Upon lowering , we find an ergodic regime exhibiting fast thermalization consistent with the prediction of the (Floquet) eigenstate thermalization hypothesis. In addition, we identify special drive frequencies (where ) at which the Floquet Hamiltonian exhibits prethermal strong Hilbert space fragmentation (HSF) with the largest fragment being ergodic; in contrast, a weak HSF is found at (where ). We also study the sector with which shows strong HSF at but no fragmentation at . Our analysis indicates that the strong HSF in this sector harbors an integrable largest fragment. We provide numerical support for our analytical and perturbative results using exact-diagonalization (ED) studies on finite chains of length . Our numerical results for entanglement entropy, fidelity, and correlation functions of the driven chain provide definitive signatures of prethermal strong HSF for both sectors.
Keywords
Cite
@article{arxiv.2603.06111,
title = {Floquet scars and prethermal fragmentation in a driven spin-one chain},
author = {Krishanu Ghosh and Diptiman Sen and K. Sengupta},
journal= {arXiv preprint arXiv:2603.06111},
year = {2026}
}
Comments
18 pages, 11 figures