Topologically robust sound propagation in an angular-momentum-biased graphene-like resonator lattice
Топологически защищённое распространение звука в решётке резонаторов, подобной графену и смещённой по угловому моменту
2015-10-06
SCID: 54.1/cv5c7khy
Discuss with AI
acoustic topological insulatorangular-momentum-biased resonator latticenonreciprocal acoustic circulatorone-way edge propagationtopological sound propagation
Figures from the paper
Abstract (AI)
Topological insulators do not allow conduction in the bulk, yet they support edge modes that travel along the boundary only in one direction, determined by the carried electron spin, with inherent robustness to defects and disorder. Topological insulators have inspired analogues in photonics and optics, in which one-way edge propagation in topologically protected two-dimensional materials is achieved breaking time-reversal symmetry with a magnetic bias. Here, we introduce the concept of topological order in classical acoustics, realizing robust topological protection and one-way edge propagation of sound in a suitably designed resonator lattice biased with angular momentum, forming the acoustic analogue of a magnetically biased graphene layer. Extending the concept of an acoustic nonreciprocal circulator based on angular-momentum bias, time-reversal symmetry is broken here using moderate rotational motion of air within each element of the lattice, which takes the role of the electron spin in determining the direction of modal edge propagation.
Key Findings
1
Breaks time-reversal symmetry through moderate rotational air motion within each resonator, replacing magnetic bias and determining edge-mode direction.
2
Demonstrates robust, one-way sound propagation along lattice edges, protected against defects and disorder.
3
Extends angular-momentum-biased acoustic nonreciprocal circulators to a two-dimensional lattice supporting topologically protected edge modes.
4
Introduces topological order in classical acoustics using an angular-momentum-biased resonator lattice analogous to magnetically biased graphene.
Research Object
Angular-momentum-biased graphene-like acoustic resonator lattice
Research Subject
Topologically protected, robust one-way edge propagation of sound enabled by broken time-reversal symmetry and angular-momentum bias
Publication Details
Publication Date
2015-10-06
Journal
Publisher
ISSN
Open access PDF
Access Type
Author Information
Download PDF
Subscribe to digest