Genuine quantum scars survive in Floquet many-body systems with additional drive-induced scars and a stability diagram explained by classical Lyapunov exponents.
Title resolution pending
11 Pith papers cite this work. Polarity classification is still indexing.
citation-role summary
citation-polarity summary
roles
background 2polarities
background 2representative citing papers
Asymptotic quantum many-body scars in SU(N) Hubbard chains are realized explicitly as gapless magnons of an embedded SU(N) ferromagnetic Heisenberg parent Hamiltonian.
Prethermal discrete time crystals in driven dipolar 13C spins enable frequency-selective AC magnetic field sensing with up to three orders of magnitude lifetime extension via resonant response.
Trapped-ion quantum processor experimentally realizes 2D non-equilibrium steady states of hard-core bosons and fermions with source-drain driving, showing measurable effects from statistics, interactions, and magnetic fields.
A dissipative protocol with nonreciprocal auxiliary atoms stabilizes arbitrary correlated states across the many-body spectrum in Rydberg arrays.
A generalized coherent-state framework computes many-body density of states in irreducible sectors, supplies rigorous ground-state energy bounds, and identifies quantum and excited-state phase transitions in the LMG model and long-range Ising chains.
Coherently synchronized oscillations appear in mirror-symmetric MBL systems and undergo a synchronization transition that maps to a paramagnetic-ferromagnetic Ising transition in an effective model built from local integrals of motion.
Higher moments of the projected process ensemble reveal entanglement structures that distinguish chaotic from integrable dynamics more sharply than quantum dynamical or spatiotemporal entropies.
Electric fields induce flat one-magnon bands in the distorted sawtooth chain when DM couplings follow the KNB magnetoelectric form, with explicit field strengths derived for bond-aligned fields.
Derives algebraic constraints ensuring flat bands in the one-magnon spectrum of a J1-J2-J3 XXZ sawtooth chain with Dzyaloshinskii-Moriya interactions and maps them to Katsura-Nagaosa-Balatsky parameters for electric-field tuning.
citing papers explorer
-
Genuine quantum scars in Floquet chaotic many-body systems
Genuine quantum scars survive in Floquet many-body systems with additional drive-induced scars and a stability diagram explained by classical Lyapunov exponents.
-
Construction of asymptotic quantum many-body scar states in the SU($N$) Hubbard model
Asymptotic quantum many-body scars in SU(N) Hubbard chains are realized explicitly as gapless magnons of an embedded SU(N) ferromagnetic Heisenberg parent Hamiltonian.
-
Sensing with discrete time crystals
Prethermal discrete time crystals in driven dipolar 13C spins enable frequency-selective AC magnetic field sensing with up to three orders of magnitude lifetime extension via resonant response.
-
Quantum trajectory simulation of two-dimensional non-equilibrium steady states with a trapped ion quantum processor
Trapped-ion quantum processor experimentally realizes 2D non-equilibrium steady states of hard-core bosons and fermions with source-drain driving, showing measurable effects from statistics, interactions, and magnetic fields.
-
Dissipative Preparation of Correlated Quantum States in Dipolar Rydberg Arrays
A dissipative protocol with nonreciprocal auxiliary atoms stabilizes arbitrary correlated states across the many-body spectrum in Rydberg arrays.
-
A Generalized Coherent State Framework for Many-Body Density of States
A generalized coherent-state framework computes many-body density of states in irreducible sectors, supplies rigorous ground-state energy bounds, and identifies quantum and excited-state phase transitions in the LMG model and long-range Ising chains.
-
Coherently synchronized oscillations in many-body localization
Coherently synchronized oscillations appear in mirror-symmetric MBL systems and undergo a synchronization transition that maps to a paramagnetic-ferromagnetic Ising transition in an effective model built from local integrals of motion.
-
Diagnosing chaos with projected ensembles of process tensors
Higher moments of the projected process ensemble reveal entanglement structures that distinguish chaotic from integrable dynamics more sharply than quantum dynamical or spatiotemporal entropies.
-
Electric-field driven flat bands in the distorted sawtooth chain via the Katsura-Nagaosa-Balatsky mechanism
Electric fields induce flat one-magnon bands in the distorted sawtooth chain when DM couplings follow the KNB magnetoelectric form, with explicit field strengths derived for bond-aligned fields.
-
On flat bands in the $J_1$-$J_2$-$J_3$ XXZ sawtooth chain
Derives algebraic constraints ensuring flat bands in the one-magnon spectrum of a J1-J2-J3 XXZ sawtooth chain with Dzyaloshinskii-Moriya interactions and maps them to Katsura-Nagaosa-Balatsky parameters for electric-field tuning.
- Ising Blockade of Resonant Energy Transport in Dense Spin Ensembles