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B. -H. Moon

Publications and source records attributed to B. -H. Moon.

2 recordsLinked to original sources

Microwave pinning modes near Landau filling $ν=1$ in two-dimensional electron systems with alloy disorder

We report measurements of microwave spectra of two-dimensional electron systems hosted in dilute Al alloy, Al$_x$Ga$_{1-x}$As, for a range of Landau level fillings, $ν$, around 1. For $ν>0.8$ or $ν<1.2$, the samples exhibit a microwave resonance whose frequency decreases as $ν$ moves away from 1. A resonance with this behavior is the signature of solids of quasiparticles or -holes in the partially occupied Landau level, which was previously seen in ultralow disorder samples. For $ν<0.8$ down to as low as $ν=0.54$, a resonance in the spectra is still present in the Al alloy-disordered samples, though it is partially or completely suppressed at $ν=3/5$ and $1/2$, and is strongly damped over much of this $ν$ range. The resonance also shows a striking enhancement in peak frequency for $ν$ just below 3/4. We discuss possible explanations of the resonance behavior for $ν<0.8$ in terms of the composite fermion picture.

cond-mat.mes-hall

Pinning modes of high magnetic field Wigner solids with controlled alloy disorder

For a series of samples with 2D electron systems in dilute Al_x Ga_{1-x}As, with varying x from 0 to 0.8 %, we survey the pinning mode resonances of Wigner solids at the low Landau filling termination of the fractional quantum Hall effect (FQHE) series. For all x studied, the pinning modes are present with frequencies, f_pk, that are consistent with collective weak pinning. For x>=0.22% we find f_pk vs B exhibits a rapid increase that is not present for x=0. We find the observed f_pk is much smaller than values calculated with a simple Wigner solid model which neglects the effects of the disorder on the charge distribution of a carrier.

cond-mat.mes-hall