Synthetic gauge field enabled realization of bulk- and edge-transported states in an aperiodic acoustic structure

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Auteurs principaux: Fang, Y. X., Zhu, W. H., Cai, Y., Li, X. H., Zhang, M. Q., Huang, J., Li, Y., Wu, S. Q.
Format: Preprint
Publié: 2025
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author Fang, Y. X.
Zhu, W. H.
Cai, Y.
Li, X. H.
Zhang, M. Q.
Huang, J.
Li, Y.
Wu, S. Q.
author_facet Fang, Y. X.
Zhu, W. H.
Cai, Y.
Li, X. H.
Zhang, M. Q.
Huang, J.
Li, Y.
Wu, S. Q.
contents Topologically protected edge states with immunity against various disorders have been implemented in a variety of topological insulators. In this Letter, we reveal that Landau levels in aperiodic acoustic structures can be achieved under different pseudomagnetic fields (PMFs). The produced zero order Landau modes (ZOLMs) could transmit along the channels at the interior or exterior of the inhomogeneous array, which are separately termed as "bulk-transported states" (BTSs) and "edge-transported states" (ETSs). Distinct from conventional valley edge states, the ZOLMs show intriguing self-collimation feature. If a pseudoelectric field (PEF) is further included, the combination of a PMF and PEF can result in the formation of bulk or edge Landau rainbow, where Landau zero modes are distributed at various positions of the bulk or boundary of the sample at different frequencies. The synthetic-gauge-field-controlled topological states can enable fully control of robust transmission, and using the entire footprint of a topological lattice. Our findings not only profoundly advance the current understanding of topological phase matter but also offer new avenues for constructing topological acoustic devices.
format Preprint
id arxiv_https___arxiv_org_abs_2505_05939
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Synthetic gauge field enabled realization of bulk- and edge-transported states in an aperiodic acoustic structure
Fang, Y. X.
Zhu, W. H.
Cai, Y.
Li, X. H.
Zhang, M. Q.
Huang, J.
Li, Y.
Wu, S. Q.
Mesoscale and Nanoscale Physics
Optics
Topologically protected edge states with immunity against various disorders have been implemented in a variety of topological insulators. In this Letter, we reveal that Landau levels in aperiodic acoustic structures can be achieved under different pseudomagnetic fields (PMFs). The produced zero order Landau modes (ZOLMs) could transmit along the channels at the interior or exterior of the inhomogeneous array, which are separately termed as "bulk-transported states" (BTSs) and "edge-transported states" (ETSs). Distinct from conventional valley edge states, the ZOLMs show intriguing self-collimation feature. If a pseudoelectric field (PEF) is further included, the combination of a PMF and PEF can result in the formation of bulk or edge Landau rainbow, where Landau zero modes are distributed at various positions of the bulk or boundary of the sample at different frequencies. The synthetic-gauge-field-controlled topological states can enable fully control of robust transmission, and using the entire footprint of a topological lattice. Our findings not only profoundly advance the current understanding of topological phase matter but also offer new avenues for constructing topological acoustic devices.
title Synthetic gauge field enabled realization of bulk- and edge-transported states in an aperiodic acoustic structure
topic Mesoscale and Nanoscale Physics
Optics
url https://arxiv.org/abs/2505.05939