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Published on: June 28, 2018
Interfacial Dirac cones from alternating topological invariant superlattice structures of Bi2Se3
Jung-Hwan Song1, Hosub Jin, Arthur J Freeman
1Department of Physics and Astronomy, Northwestern University, Evanston, Illinois 60208, USA. jhsong@pluto.phys.northwestern.edu
Abstract:
When the three-dimensional topological insulators Bi2Se3 and Bi2Te3 have an interface with vacuum, i.e., a surface, they show remarkable features such as topologically protected and spin-momentum locked surface states. However, for practical applications, one often requires multiple interfaces or channels rather than a single surface. Here, for the first time, we show that an interfacial and ideal Dirac cone is realized by alternating band and topological insulators. The multichannel Dirac fermions from the superlattice structures open a new way for applications such as thermoelectric and spintronics devices. Indeed, utilizing the interfacial Dirac fermions, we also demonstrate the possible power factor improvement for thermoelectric applications.
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