Robust temporal pumping in a magneto-mechanical topological insulator

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作者
Inbar Hotzen Grinberg
Mao Lin
Cameron Harris
Wladimir A. Benalcazar
Christopher W. Peterson
Taylor L. Hughes
Gaurav Bahl
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[1] University of Illinois at Urbana-Champaign,Department of Mechanical Science and Engineering
[2] University of Illinois at Urbana-Champaign,Department of Physics
[3] University of Illinois at Urbana-Champaign,Department of Electrical and Computer Engineering
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The transport of energy through 1-dimensional (1D) waveguiding channels can be affected by sub-wavelength disorder, resulting in undesirable localization and backscattering phenomena. However, quantized disorder-resilient transport is observable in the edge currents of 2-dimensional (2D) topological band insulators with broken time-reversal symmetry. Topological pumps are able to reduce this higher-dimensional topological insulator phenomena to lower dimensionality by utilizing a pumping parameter (either space or time) as an artificial dimension. Here we demonstrate a temporal topological pump that produces on-demand, robust transport of mechanical energy using a 1D magneto-mechanical metamaterial. We experimentally demonstrate that the system is uniquely resilient to defects occurring in both space and time. Our findings open a path towards exploration of higher-dimensional topological physics with time as a synthetic dimension.
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