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Spin instabilities and quantum phase transitions in integral and fractional quantum Hall states

Arkadiusz Wojs, John J. Quinn

Published 2001-11-28Version 1

The inter-Landau-level spin excitations of quantum Hall states at filling factors nu=2 and 4/3 are investigated by exact numerical diagonalization for the situation in which the cyclotron (hbar*omega_c) and Zeeman (E_Z) splittings are comparable. The relevant quasiparticles and their interactions are studied, including stable spin wave and skyrmion bound states. For nu=2, a spin instability at a finite value of epsilon=hbar*omega_c-E_Z leads to an abrupt paramagnetic to ferromagnetic transition, in agreement with the mean-field approximation. However, for nu=4/3 a new and unexpected quantum phase transition is found which involves a gradual change from paramagnetic to ferromagnetic occupancy of the partially filled Landau level as epsilon is decreased.

Comments: 4 pages, 5 figures, submitted to Phys.Rev.Lett
Journal: Phys. Rev. B 65, 201301 (2002)
Categories: cond-mat.mes-hall
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