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September 16, 2011Physical Review Letters2,320 citationsOpen Access

Weyl Semimetal in a Topological Insulator Multilayer

ABA. A. BurkovLBLeon Balents

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Abstract

We propose a simple realization of the three-dimensional (3D) Weyl semimetal phase, utilizing a multilayer structure, composed of identical thin films of a magnetically doped 3D topological insulator, separated by ordinary-insulator spacer layers. We show that the phase diagram of this system contains a Weyl semimetal phase of the simplest possible kind, with only two Dirac nodes of opposite chirality, separated in momentum space, in its band structure. This Weyl semimetal has a finite anomalous Hall conductivity and chiral edge states and occurs as an intermediate phase between an ordinary insulator and a 3D quantum anomalous Hall insulator. We find that the Weyl semimetal has a nonzero dc conductivity at zero temperature, but Drude weight vanishing as T(2), and is thus an unusual metallic phase, characterized by a finite anomalous Hall conductivity and topologically protected edge states.

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Burkov et al. (2011) studied this question.

synapsesocial.com/papers/6a169ed99bb2c22b89b25e91https://doi.org/10.1103/physrevlett.107.127205
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