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Observation of an acoustic octupole topological insulator.


ABSTRACT: Berry phase associated with energy bands in crystals can lead to quantised observables like quantised dipole polarizations in one-dimensional topological insulators. Recent theories have generalised the concept of quantised dipoles to multipoles, resulting in the discovery of multipole topological insulators which exhibit a hierarchy of multipole topology: a quantised octupole moment in a three-dimensional bulk induces quantised quadrupole moments on its two-dimensional surfaces, which in turn induce quantised dipole moments on one-dimensional hinges. Here, we report on the realisation of an octupole topological insulator in a three-dimensional acoustic metamaterial. We observe zero-dimensional topological corner states, one-dimensional gapped hinge states, two-dimensional gapped surface states, and three-dimensional gapped bulk states, representing the hierarchy of octupole, quadrupole and dipole moments. Conditions for forming a nontrivial octupole moment are demonstrated by comparisons with two different lattice configurations having trivial octupole moments. Our work establishes the multipole topology and its full hierarchy in three-dimensional geometries.

SUBMITTER: Xue H 

PROVIDER: S-EPMC7229046 | biostudies-literature | 2020 May

REPOSITORIES: biostudies-literature

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Observation of an acoustic octupole topological insulator.

Xue Haoran H   Ge Yong Y   Sun Hong-Xiang HX   Wang Qiang Q   Jia Ding D   Guan Yi-Jun YJ   Yuan Shou-Qi SQ   Chong Yidong Y   Zhang Baile B  

Nature communications 20200515 1


Berry phase associated with energy bands in crystals can lead to quantised observables like quantised dipole polarizations in one-dimensional topological insulators. Recent theories have generalised the concept of quantised dipoles to multipoles, resulting in the discovery of multipole topological insulators which exhibit a hierarchy of multipole topology: a quantised octupole moment in a three-dimensional bulk induces quantised quadrupole moments on its two-dimensional surfaces, which in turn i  ...[more]

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