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Condensed matter physics / Quantum phases / Statistical mechanics / Bismuth selenide / Graphene / Density of states / Topological quantum number / Manifold / Dirac fermion / Physics / Quantum field theory / Topological insulator


D E T N A T U R V I D E N SK A B E L I G E F A K U L T E T K Ø B E N H A V N S U N I V E R SI T E T Understanding the low energy physics of bismuth selenide: A three-dimensional topological insulator
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Document Date: 2015-05-05 07:39:52


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Contents 1 Introduction 1 2 Group / ABC / vF / Chapter 2 Group / /

Facility

The Niels Bohr Institute / /

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physical applications / product groups / low energy physics / associative law holds / gapped energy states / energy gap / Energy dispersion / physical systems / rotation / energy / /

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Fermi / /

Organization

Niels Bohr Institute / /

Person

Andre Geim / Konstantin Novoselov / Jens Paaske Anders Mathias Lunde / /

Position

topological insulator Author / ective model for Bi Se / model for Bi Se / /

ProvinceOrState

Alberta / /

Technology

spectroscopy / /

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