Renormalization group analysis and numerics for interacting particles in colored-noise disorder predict a localization transition at zero interaction strength with atypical localization length scaling.
Title resolution pending
3 Pith papers cite this work. Polarity classification is still indexing.
verdicts
UNVERDICTED 3representative citing papers
Granovskii-Zhedanov scar states in XYZ models are described via spectrum-generating algebra with perturbative and optimized constructions, and lattice-independent versions exist only on specific uniform and non-uniform higher-dimensional lattices.
Reports signature of arrested prethermal relaxation in NO ultracold plasma blocked by high-l Rydberg gap, with local RF or state excitation driving global equilibration via dissipation.
citing papers explorer
-
Localization Transition for Interacting Quantum Particles in Colored-Noise Disorder
Renormalization group analysis and numerics for interacting particles in colored-noise disorder predict a localization transition at zero interaction strength with atypical localization length scaling.
-
Granovskii-Zhedanov Scars of XYZ Models: Modern Algebraic Perspectives and Realization in Higher Dimensional Lattices
Granovskii-Zhedanov scar states in XYZ models are described via spectrum-generating algebra with perturbative and optimized constructions, and lattice-independent versions exist only on specific uniform and non-uniform higher-dimensional lattices.
-
Dynamical control in a prethermalized molecular ultracold plasma: Local dissipation drives global relaxation
Reports signature of arrested prethermal relaxation in NO ultracold plasma blocked by high-l Rydberg gap, with local RF or state excitation driving global equilibration via dissipation.