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Search for Majorana fermions in topological superconductors.
Author(s) -
W. Pan,
Xiaoyan Shi,
Samuel D. Hawkins,
John F. Klem
Publication year - 2014
Publication title -
osti oai (u.s. department of energy office of scientific and technical information)
Language(s) - English
Resource type - Reports
DOI - 10.2172/1177084
Subject(s) - majorana , topological insulator , physics , superconductivity , fermion , symmetry protected topological order , topological quantum computer , topology (electrical circuits) , topological degeneracy , topological order , topological quantum number , majorana fermion , topological entropy in physics , condensed matter physics , quantum , theoretical physics , quantum mechanics , mathematics , combinatorics
The goal of this project is to search for Majorana fermions (a new quantum particle) in a topological superconductor (a new quantum matter achieved in a topological insulator proximitized by an s-wave superconductor). Majorana fermions (MFs) are electron-like particles that are their own anti-particles. MFs are shown to obey non-Abelian statistics and, thus, can be harnessed to make a fault-resistant topological quantum computer. With the arrival of topological insulators, novel schemes to create MFs have been proposed in hybrid systems by combining a topological insulator with a conventional superconductor. In this LDRD project, we will follow the theoretical proposals to search for MFs in onedimensional (1D) topological superconductors. 1D topological superconductor will be created inside of a quantum point contact (with the metal pinch-off gates made of conventional s-wave superconductors such as niobium) in a two-dimensional topological insulator (such as inverted type-II InAs/GaSb heterostructure).

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