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Topological surface state transport and current saturation in topological insulator nanoribbons field effect transistors

Research output: Chapter in Book/Report/Conference proceedingConference contribution

Abstract

Topological insulators (TIs) are a new class of quantum matter, with an insulating bulk, where electrons on the surface behave as massless Dirac fermions as in graphene [1,2]. However, in contrast with graphene, the surface state of TIs is topologically protected against non-magnetic disorder or lattice defects. This topological protection, unique to TIs, originates from the spin locked to the Fermi momentum ('spin-helical Dirac electrons', where backscattering is forbidden). Consequently, TI nanowire (NW) devices may outperform conventional semiconductor NWs or graphene nanoribbon (NR) devices that may suffer from backscattering. However, one of the main limitations to explore device applications in TIs was its large bulk conductance, shunting the surface conduction and also impeding effective gate tuning. © 2014 IEEE.
Original languageEnglish
Title of host publicationDevice Research Conference - Conference Digest, DRC
Pages167-168
Number of pages2
ISBN (Electronic)9781479954056
DOIs
StatePublished - Jan 1 2014
Externally publishedYes
Event72nd Device Research Conference, DRC 2014 -
Duration: Jan 1 2014 → …

Publication series

NameDevice Research Conference - Conference Digest, DRC

Conference

Conference72nd Device Research Conference, DRC 2014
Period01/1/14 → …

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