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- W2077732527 abstract "We report on low-temperature thermopower measurements of interacting GaAs bilayer hole systems in the limit of no interlayer tunneling. These systems exhibit a reentrant insulating phase near the many-body quantum Hall state (QHS) at total filling factor ν=1, when both layers have the same density. The diffusion thermopower is expected to diverge as T-1 in the presence of an energy gap (Wigner crystal) or to vanish in the case of a disordered induced mobility gap. Our results show that, as the temperature is decreased, the diffusion thermopower exhibits a T-1 dependence in the insulating phase around ν=1. This behavior clearly indicates the opening of an energy gap at low temperature, in agreement with the formation of a pinned Wigner solid. Finally, we report on the T-dependence of the thermopower at ν=1." @default.
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- W2077732527 date "2006-08-01" @default.
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- W2077732527 title "Thermopower evidence for Wigner crystallization in the insulating phase of two-dimensional GaAs bilayer hole systems" @default.
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- W2077732527 doi "https://doi.org/10.1016/j.physe.2006.02.040" @default.
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