Energy filtered leads for quantized transport in Floquet systems

ORAL

Abstract


In equilibrium, robust electronic edge or surface modes play key roles in the fascinating quantized responses exhibited by topological materials. Topological bands and edges states can be induced dynamically even in trivial materials, using a time-periodic drive. In contrast to their equilibrium counterparts, the dynamically induced Floquet topological insulators do not exhibit quantized transport when probed using conventional measurements, such as the differential conductance. This lack of quantization arises due to photon assisted tunneling from the system to the leads and vice versa. We show that quantization of the differential conductance can be restored by connecting the system and the leads via an energy filter. We discuss the utility of this approach for achieving quantization of other responses in topological Floquet systems.

*We acknowledge support from the European Research Council (ERC) under the European Union Horizon 2020 Research and Innovation Programme (Grant Agreements No. 639172 and No.678862), from the Israeli Center of Research Excellence (I-CORE) “Circle of Light”, the Villum Foundation, and CRC 183 of the Deutsche Forschungsgemeinschaft.

Presenters

  • Netanel Lindner

    • Technion - Israel Institute of Technology

Authors

  • Netanel Lindner

    • Technion - Israel Institute of Technology
  • Mads Kruse

    • Niels Bohr Institute
  • Mark Rudner

    • Niels Bohr Institute
    • Niels Bohr Institute, University of Copenhagen
    • Niels Bohr International Academy and the Center for Quantum Devices, Niels Bohr Institute, University of Copenhagen