Collective excitations, NMR, and phase transitions in Skyrme Crystals

Publication date

1997

Authors

Côté, R.
MacDonald, A.H.
Brey, L.
Fertig, H.A.
Girvin, S.M.
Stoof, H.T.C.

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Abstract

At Landau level filling factors near ν = 1, quantum Hall ferromagnets form a Skyrme crystal state with quasi-long-range translational and noncollinear magnetic order. We develop an effective low energy theory which explains the presence of magnetic excitations in these systems at energies below the Larmor gap ( Δ) and that predicts a dramatic enhancement of the nuclear spin relaxation rate by a factor of 103. The effective theory predicts a rich set of quantum and classical phase transitions. Based in part on accurate time-dependent Hartree-Fock calculations of the ordered state collective excitation spectrum, we discuss aspects of the T-ν-Δ Skyrme crystal phase diagram.

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