Published November 22, 2002 | Version Submitted
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Double layer two-dimensional electron systems: Probing the transition from weak to strong coupling with Coulomb drag

Abstract

Frictional drag measurements revealing anomalously large dissipation at the transition between the weakly- and strongly-coupled regimes of a bilayer two-dimensional electron system at total Landau level filling factor ν_T = 1 are reported. This result suggests the existence of fluctuations, either static or dynamic, near the phase boundary separating the quantized Hall state at small layer separations from the compressible state at larger separations. Interestingly, the anomalies in drag seem to persist to larger layer separations than does interlayer phase coherence as detected in tunneling.

Additional Information

We thank Ady Stern, Bertrand Halperin and Steven Girvin for enlightening discussions and Ian Spielman for help with sample fabrication. This work was supported by the NSF under Grant No. DMR-0070890 and the DOE under Grant No. DE-FG03-99ER45766.

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Identifiers

Eprint ID
95631
Resolver ID
CaltechAUTHORS:20190521-091159424

Related works

Funding

NSF
DMR-0070890
Department of Energy (DOE)
DE-FG03-99ER45766

Dates

Created
2019-05-21
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Updated
2023-06-01
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