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September 4, 2012Physical Review Letters1,181 citationsOpen Access

Topological States and Adiabatic Pumping in Quasicrystals

YKYaacov E. KrausHolon Institute of TechnologyYLYoav LahiniTel Aviv UniversityZRZohar RingelHebrew College

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Abstract

The unrelated discoveries of quasicrystals and topological insulators have in turn challenged prevailing paradigms in condensed-matter physics. We find a surprising connection between quasicrystals and topological phases of matter: (i) quasicrystals exhibit nontrivial topological properties and (ii) these properties are attributed to dimensions higher than that of the quasicrystal. Specifically, we show, both theoretically and experimentally, that one-dimensional quasicrystals are assigned two-dimensional Chern numbers and, respectively, exhibit topologically protected boundary states equivalent to the edge states of a two-dimensional quantum Hall system. We harness the topological nature of these states to adiabatically pump light across the quasicrystal. We generalize our results to higher-dimensional systems and other topological indices. Hence, quasicrystals offer a new platform for the study of topological phases while their topology may better explain their surface properties.

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Cite This Study

Kraus et al. (2012) studied this question.

synapsesocial.com/papers/69d80c8b66a29169b4bede37https://doi.org/10.1103/physrevlett.109.106402
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