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Topological Quantum Computing
Superconducting Qubits
Sublattice-sensitive Majorana Modes
arXiv
Authors: Di Zhu, Bo-Xuan Li, Zhongbo Yan
Year
2021
Paper ID
41070
Status
Preprint
Abstract Read
~2 min
Abstract Words
132
Citations
N/A
Abstract
For two- and three-dimensional topological insulators whose unit cells consist of multiple sublattices, the boundary terminating at which type of sublattice can affect the time-reversal invariant momentum at which the Dirac points of helical boundary states are located. Through a general theory and a representative model, we reveal that this interesting property allows the realization of Majorana modes at sublattice domain walls forming on the boundary when the boundary Dirac points of the topological insulator are gapped by an unconventional superconductor in proximity. Intriguingly, we find that the sensitive sublattice-dependence of the Majorana modes allows their positions to be precisely manipulated by locally controlling the terminating sublattices or boundary potential. Our work reveals that the common sublattice degrees of freedom in materials open a new route to realize and manipulate Majorana modes.
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- For two- and three-dimensional topological insulators whose unit cells consist of multiple sublattices, the boundary terminating at which type of sublattice can affect the...
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