Order parameter suppression in double layer quantum Hall ferromagnets

Physics – Condensed Matter – Mesoscale and Nanoscale Physics

Scientific paper

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7 pages, 4 figures, To appear in Proceedings of 13th International Conference on Electronic Properties of Two-Dimensional Syst

Scientific paper

10.1016/S1386-9477(99)00133-2

Double-layer quantum Hall systems at Landau level filling factor $\nu=1$ have a broken symmetry ground state with spontaneous interlayer phase coherence and a gap between symmetric and antisymmetric subbands in the absence of interlayer tunneling. We examine the influence of quantum fluctuations on the spectral function of the symmetric Green's function, probed in optical absorption experiments (cond-mat/9809373). We find that as the maximum layer separation at which the $\nu=1$ quantum Hall effect occurs is approached, absorption in the lowest Landau level grows in strength. Detailed line shapes for this absorption are evaluated and related to features in the system's collective excitation spectrum.

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