Effect of gallium doping on structural and transport properties of the topological insulator Bi2Se3 grown by molecular beam epitaxy

Author:

Brito Daniel12,Pérez-Rodriguez Ana3,Khatri Ishwor1ORCID,Tavares Carlos José4ORCID,Amado Mario3,Castro Eduardo5,Diez Enrique3ORCID,Sadewasser Sascha16ORCID,Claro Marcel S.16ORCID

Affiliation:

1. International Iberian Nanotechnology Laboratory, Av. Mestre Jose Veiga, Braga 4715-330, Portugal

2. Departamento de Física e Astronomia, Faculdade de Ciências, Universidade do Porto, rua do Campo Alegre s/n, 4169-007, Porto, Portugal

3. Nanotechnology Group, Department of Fundamental Physics, University of Salamanca 37008, Salamanca, Spain

4. Physics Centre of Minho and Porto Universities (CF-UM-PT), University of Minho, Azurém, 4804-533, Guimarães, Portugal

5. Centro de Física das Universidades do Minho e Porto (CF-UM-PT), Departamento de Físisca e Astronomia, Faculdade de Ciências, Universidade do Porto, 4169-007 Porto, Portugal

6. QuantaLab, Braga 4715-330, Portugal

Abstract

Topological insulators possess non-conductive bulk and present surface states, henceforth, they are electrically conductive along their boundaries. Bismuth selenide (Bi2Se3) is one of the most promising topological insulators. However, a major drawback is its n-type nature arising from its natural doping, which makes the transport in the bulk dominant. This effect can be overcome by shifting the chemical potential into the bandgap, turning the transport of the surface states to be more pronounced than the bulk counterpart. In this work, Bi2Se3 was grown by molecular beam epitaxy and doped with 0.8, 2, 7, and 14 at. % of Ga, with the aim of shifting the chemical potential into the bandgap. The structural, morphological, and electronic properties of the Ga doped Bi2Se3 are studied. Raman and x-ray diffraction measurements confirmed the incorporation of the dopants into the crystal structure. Transport and magnetoresistance measurements in the temperature range of 1.5–300 K show that Ga-doped Bi2Se3 is n-type with a bulk charge carrier concentration of 1019 cm−3. Remarkably, magnetotransport of the weak antilocalization effect measurements confirms the existence of surface states up to a doping percentage of 2 at. % of Ga and coherence length values between 50 and 800 nm, which envisages the possibility of topological superconductivity in this material.

Funder

Fundação para a Ciência e Tecnologia

Agencia Estatal de Investigación

Junta de Castilla y Léon

Iberian Nanotechnology Laboratory

Publisher

AIP Publishing

Subject

General Physics and Astronomy

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