Enhancement of electron-hole superfluidity in double few-layer graphene

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Abstract

We propose two coupled electron-hole sheets of few-layer graphene as a new nanostructure to observe superfluidity at enhanced densities and enhanced transition temperatures. For ABC stacked few-layer graphene we show that the strongly correlated electron-hole pairing regime is readily accessible experimentally using current technologies. We find for double trilayer and quadlayer graphene sheets spatially separated by a nano-thick hexagonal boron-nitride insulating barrier, that the transition temperature for electron-hole superfluidity can approach temperatures of 40 K.

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Zarenia, M., Perali, A., Neilson, D., & Peeters, F. M. (2014). Enhancement of electron-hole superfluidity in double few-layer graphene. Scientific Reports, 4. https://doi.org/10.1038/srep07319

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