Topological Pumping Processes and Higher-Order Topological Insulators
ORAL
Abstract
We expand the theory of topological insulators with quantized electric multipole moment to cover associated topological pumping phenomena and a novel class of 3D insulator with chiral hinge states. Just as a varying dipole generates charge pumping, a varying quadrupole generates dipole pumping, and a varying octupole generates quadrupole pumping. For non-trivial adiabatic cycles, the transport of these moments is quantized. An analysis of these interconnected phenomena leads to the conclusion that a new kind of Chern-type insulator exists, which has chiral, hinge-localized modes in 3D. We provide the minimal models for the non-trivial pumping processes and the hinge Chern insulator. We also describe the topological invariants that protect them.
*US NSF under grant DMR 1351895-CAR, Sloan Foundation, U.S. DOE grant DE-SC0016239, NSF Early-concept Grants for Exploratory Research award DMR-1643312, Simons Investigator award ONR - N00014-14-1-0330, Army Research Office Multidisciplinary University Research Initiative grant W911NF-12-1-0461, NSF-Mater
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Presenters
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Wladimir Benalcazar
- Physics, University of Illinois at Urbana-Champaign
- University of Illinois Urbana-Champaign
- Physics, Univ of Illinois - Urbana