Nonlinear signatures of Floquet band topology
Optics
2022-04-06 v1
Abstract
We study how the nonlinear propagation dynamics of bulk states may be used to distinguish topological phases of slowly-driven Floquet lattices. First, we show how instabilities of nonlinear Bloch waves may be used to populate Floquet bands and measure their Chern number via the emergence of nontrivial polarization textures in a similar manner to static (undriven) lattices. Second, we show how the nonlinear dynamics of non-stationary superposition states may be used to identify dynamical symmetry inversion points in the intra-cycle dynamics, thereby allowing anomalous Floquet phases to be distinguished from the trivial phase. The approaches may be readily implemented using light propagation in nonlinear waveguide arrays.
Keywords
Cite
@article{arxiv.2111.10229,
title = {Nonlinear signatures of Floquet band topology},
author = {Aleksandra Maluckov and Ekaterina Smolina and Daniel Leykam and Sinan Gundogdu and Dimitris G. Angelakis and Daria A. Smirnova},
journal= {arXiv preprint arXiv:2111.10229},
year = {2022}
}
Comments
7 figures