arXiv:1301.3207·v2·Strongly Correlated Electrons
Confinement and Deconfinement of Spinons in Two Dimensions
Ying Tang🇺🇸 · Anders W. Sandvik🇺🇸
Abstract
We use Monte Carlo methods to study spinons in two-dimensional quantum spin systems, characterizing their intrinsic size and confinement length . We confirm that spinons are deconfined, and finite, in a resonating valence-bond spin-liquid state. In a valence-bond solid, we find finite and , with of a single spinon significantly larger than the bound-state---the spinon is soft and shrinks as the bound state is formed. Both and diverge upon approaching the critical point separating valence-bond solid and Néel ground states. We conclude that the spinon deconfinement is marginal in the lowest-energy state in the spin-1 sector, due to weak attractive spinon interactions. Deconfinement in the vicinity of the critical point should occur at higher energies.
Comments: 5 pages, 5 figures