4.8 Article

Control of electron-electron interaction in graphene by proximity screening

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NATURE COMMUNICATIONS
卷 11, 期 1, 页码 -

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NATURE PUBLISHING GROUP
DOI: 10.1038/s41467-020-15829-1

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资金

  1. European Research Council
  2. Graphene Flagship
  3. EPSRC [EP/N010345/1]
  4. Royal Society
  5. Lloyd's Register Foundation
  6. Graphene NowNANO Doctoral Training Programme
  7. EPSRC [EP/K005014/1, EP/N010345/1] Funding Source: UKRI

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Electron-electron interactions play a critical role in many condensed matter phenomena, and it is tempting to find a way to control them by changing the interactions' strength. One possible approach is to place a studied system in proximity of a metal, which induces additional screening and hence suppresses electron interactions. Here, using devices with atomically-thin gate dielectrics and atomically-flat metallic gates, we measure the electron-electron scattering length in graphene and report qualitative deviations from the standard behavior. The changes induced by screening become important only at gate dielectric thicknesses of a few nm, much smaller than a typical separation between electrons. Our theoretical analysis agrees well with the scattering rates extracted from measurements of electron viscosity in monolayer graphene and of umklapp electron-electron scattering in graphene superlattices. The results provide a guidance for future attempts to achieve proximity screening of many-body phenomena in two-dimensional systems.

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