Acoustic Type-II Weyl Nodes from Stacking Dimerized Chains

Zhaoju Yang and Baile Zhang
Phys. Rev. Lett. 117, 224301 – Published 23 November 2016
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Abstract

Lorentz-violating type-II Weyl fermions, which were missed in Weyl’s prediction of nowadays classified type-I Weyl fermions in quantum field theory, have recently been proposed in condensed matter systems. The semimetals hosting type-II Weyl fermions offer a rare platform for realizing many exotic physical phenomena that are different from type-I Weyl systems. Here we construct the acoustic version of a type-II Weyl Hamiltonian by stacking one-dimensional dimerized chains of acoustic resonators. This acoustic type-II Weyl system exhibits distinct features in a finite density of states and unique transport properties of Fermi-arc-like surface states. In a certain momentum space direction, the velocity of these surface states is determined by the tilting direction of the type-II Weyl nodes rather than the chirality dictated by the Chern number. Our study also provides an approach of constructing acoustic topological phases at different dimensions with the same building blocks.

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  • Received 11 March 2016

DOI:https://doi.org/10.1103/PhysRevLett.117.224301

© 2016 American Physical Society

Physics Subject Headings (PhySH)

Atomic, Molecular & Optical

Authors & Affiliations

Zhaoju Yang1 and Baile Zhang1,2,*

  • 1Division of Physics and Applied Physics, School of Physical and Mathematical Sciences, Singapore 637371, Singapore
  • 2Centre for Disruptive Photonic Technologies, Nanyang Technological University, Singapore 637371, Singapore

  • *To whom correspondence should be addressed. blzhang@ntu.edu.sg

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Issue

Vol. 117, Iss. 22 — 25 November 2016

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