Bethe roots in the finite Heisenberg chain ground state become Galois unsolvable for 8 or more sites, while wavefunction coefficients do so for 10 or more sites.
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In γ-Ba₃CoNb₂O₉, a disordered cubic spin-1/2 lattice near the percolation threshold, experiments and simulations reveal a disorder-driven dynamical state with short-range correlations and no conventional freezing.
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Galois Solvability of Finite-Size Bethe Solutions in the Heisenberg Chain
Bethe roots in the finite Heisenberg chain ground state become Galois unsolvable for 8 or more sites, while wavefunction coefficients do so for 10 or more sites.
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Dynamical magnetism in the disordered cubic lattice material $\gamma$-${\rm Ba}_{3}{\rm CoNb}_{2}{\rm O}_{9}$
In γ-Ba₃CoNb₂O₉, a disordered cubic spin-1/2 lattice near the percolation threshold, experiments and simulations reveal a disorder-driven dynamical state with short-range correlations and no conventional freezing.