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Monday, July 14, 2014
4:00 PM - 5:00 PM
East Bridge 114

Condensed Matter Physics Seminar

Spinless Topological Insulators without Time-Reversal Symmetry
Aris Alexandradinata, Princeton University,

We explore the 32 crystallographic point groups and identify topological phases of matter with robust surface modes. For n =3,4 and 6 of the C_{nv} groups, we find the first-known 3D topological insulators without spin-orbit coupling, and with surface modes that are protected only by point groups, i.e., not needing time-reversal symmetry. To describe these C_{nv} systems, we introduce the notions of (a) a halved mirror chirality: an integer invariant which characterizes half-mirror-planes in the 3D Brillouin zone, and (b) a bent Chern number: the traditional TKNN invariant generalized to bent 2D manifolds. In the second part of the talk, we report the observation of edge states on Bismuth bilayers, which validate theoretical predictions that 2D Bismuth is a topological insulator.

For more information, please contact Jonathan Gross by email at [email protected].