Quantum group symmetry enables superdiffusive hydrodynamic tails for transverse spin operators in chaotic XXZ-like models despite lacking local quantum group charges.
Title resolution pending
2 Pith papers cite this work. Polarity classification is still indexing.
2
Pith papers citing it
verdicts
UNVERDICTED 2representative citing papers
Drude weight measurements in a 1D interacting Bose gas confirm nearly ballistic transport matching hydrodynamic theory even at finite temperature and interactions.
citing papers explorer
-
Hydrodynamic tails in chaotic spin chains with quantum group symmetry
Quantum group symmetry enables superdiffusive hydrodynamic tails for transverse spin operators in chaotic XXZ-like models despite lacking local quantum group charges.
-
Characterising transport in a quantum gas by measuring Drude weights
Drude weight measurements in a 1D interacting Bose gas confirm nearly ballistic transport matching hydrodynamic theory even at finite temperature and interactions.