pith. sign in

arxiv: 1603.02881 · v1 · pith:6ZPUVRDKnew · submitted 2016-03-09 · ❄️ cond-mat.mes-hall

Nonmagnetic band gap at the Dirac point of the magnetic topological insulator (Bi_{1-x}Mn_x)₂Se₃

classification ❄️ cond-mat.mes-hall
keywords topologicalbandmagneticdiracnovelpointsurfacebulk
0
0 comments X p. Extension
pith:6ZPUVRDK Add to your LaTeX paper What is a Pith Number?
\usepackage{pith}
\pithnumber{6ZPUVRDK}

Prints a linked pith:6ZPUVRDK badge after your title and writes the identifier into PDF metadata. Compiles on arXiv with no extra files. Learn more

read the original abstract

Magnetic doping is expected to open a band gap at the Dirac point of topological insulators by breaking time-reversal symmetry and to enable novel topological phases. Epitaxial (Bi$_{1-x}$Mn$_{x}$)$_{2}$Se$_{3}$ is a prototypical magnetic topological insulator with a pronounced surface band gap of $\sim100$ meV. We show that this gap is neither due to ferromagnetic order in the bulk or at the surface nor to the local magnetic moment of the Mn, making the system unsuitable for realizing the novel phases. We further show that Mn doping does not affect the inverted bulk band gap and the system remains topologically nontrivial. We suggest that strong resonant scattering processes cause the gap at the Dirac point and support this by the observation of in-gap states using resonant photoemission. Our findings establish a novel mechanism for gap opening in topological surface states which challenges the currently known conditions for topological protection.

This paper has not been read by Pith yet.

discussion (0)

Sign in with ORCID, Apple, or X to comment. Anyone can read and Pith papers without signing in.