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Spin Transition in Strongly Correlated Bilayer Two Dimensional Electron Systems

arXiv:cond-mat/0410092 · doi:10.1103/PhysRevLett.94.076803

Abstract

Using a combination of heat pulse and nuclear magnetic resonance techniques we demonstrate that the phase boundary separating the interlayer phase coherent quantum Hall effect at $ν_T = 1$ in bilayer electron gases from the weakly coupled compressible phase depends upon the spin polarization of the nuclei in the host semiconductor crystal. Our results strongly suggest that, contrary to the usual assumption, the transition is attended by a change in the electronic spin polarization.

4 pages, 3 postscript figure