Top-down patterning of topological surface and edge states using a focused ion beam

Author:

Bake AbdulhakimORCID,Zhang QiORCID,Ho Cong SonORCID,Causer Grace L.ORCID,Zhao WeiyaoORCID,Yue ZengjiORCID,Nguyen Alexander,Akhgar Golrokh,Karel Julie,Mitchell DavidORCID,Pastuovic Zeljko,Lewis Roger,Cole Jared H.ORCID,Nancarrow Mitchell,Valanoor NagarajanORCID,Wang Xiaolin,Cortie DavidORCID

Abstract

AbstractThe conducting boundary states of topological insulators appear at an interface where the characteristic invariant ℤ2 switches from 1 to 0. These states offer prospects for quantum electronics; however, a method is needed to spatially-control ℤ2 to pattern conducting channels. It is shown that modifying Sb2Te3 single-crystal surfaces with an ion beam switches the topological insulator into an amorphous state exhibiting negligible bulk and surface conductivity. This is attributed to a transition from ℤ2 = 1 → ℤ2 = 0 at a threshold disorder strength. This observation is supported by density functional theory and model Hamiltonian calculations. Here we show that this ion-beam treatment allows for inverse lithography to pattern arrays of topological surfaces, edges and corners which are the building blocks of topological electronics.

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry,Multidisciplinary

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