Abstract
We propose a platform for braiding Majorana non-Abelian anyons based
on a heterostructure between a dd-wave
high-T_cTc
superconductor and a quantum spin-Hall insulator. It has been recently
shown that such a setup for a quantum spin-Hall insulator leads to a
pair of Majorana zero modes at each corner of the sample, and thus can
be regarded as a higher-order topological superconductor. We show that
upon applying a Zeeman field in the region, these Majorana modes split
in space and can be manipulated for braiding processes by tuning the
field and pairing phase. We show that such a setup can achieve full
braiding, exchanging, and arbitrary phase gates (including the
\pi/8π/8
magic gates) of the Majorana zero modes, all of which are robust and
protected by symmetries. As many of the ingredients of our proposed
platform have been realized in recent experiments, our results provide a
new route toward universal topological quantum computation.
Funder
Alfred P. Sloan Foundation
National Science Foundation
Simons Foundation
University of Chicago
University of Florida
Subject
General Physics and Astronomy
Cited by
8 articles.
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