Ising blockade detunes spin pairs via correlated diagonal interactions, suppressing resonant fraction linearly with broadening and yielding a fit-free renormalization that accounts for T_r ∝ r^{4.5} in 3D masers and T_r ∝ r^3 in 2D.
Title resolution pending
4 Pith papers cite this work. Polarity classification is still indexing.
citation-role summary
citation-polarity summary
verdicts
UNVERDICTED 4roles
background 1polarities
background 1representative 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.
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.
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.
citing papers explorer
-
Ising Blockade of Resonant Energy Transport in Dense Spin Ensembles
Ising blockade detunes spin pairs via correlated diagonal interactions, suppressing resonant fraction linearly with broadening and yielding a fit-free renormalization that accounts for T_r ∝ r^{4.5} in 3D masers and T_r ∝ r^3 in 2D.
-
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.
-
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.
-
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.