Thursday, June 21, 2012

1206.4332 (Manal Al-Ali et al.)

Percolation transition in quantum Ising and rotor models with sub-Ohmic
dissipation
   [PDF]

Manal Al-Ali, José A. Hoyos, Thomas Vojta
We investigate the influence of sub-Ohmic dissipation on randomly diluted quantum Ising and rotor models. The dissipation causes the quantum dynamics of sufficiently large percolation clusters to freeze completely. As a result, the zero-temperature quantum phase transition across the lattice percolation threshold separates an unusual super-paramagnetic cluster phase from an inhomogeneous ferromagnetic phase. We determine the low-temperature thermodynamic behavior in both phases which is dominated by large frozen and slowly fluctuating percolation clusters. We relate our results to the smeared transition scenario for disordered quantum phase transitions, and we compare the cases of sub-Ohmic, Ohmic, and super-Ohmic dissipation.
View original: http://arxiv.org/abs/1206.4332

No comments:

Post a Comment