Manipulation of Majorana particles based on quantum nanoarchitectonics
Using the topological quantum nano structure designed by the research group, one can transport and exchange Majorana fermions merely by switching local gate voltages. Braiding of Majorana fermions obeys the non-Abelian statistics, and thus can be used for implementation of quantum computation robust to quantum decoherence.

Fig. 1 (left): Schematics of a quantum device used to exchange two Majorana fermions (red and green). The four topological superconductors are connected by constriction junctions, where gate voltages can be applied to control hopping of electrons.
Fig. 2 (right): Wave functions of Majorana fermions at the core of superconducting vortex and the sample edge (red part).

Fig. 3 (left): Transportation of Majorana fermion by switching gate voltages at the constriction junctions. The Majoana fermions grabbed at the vortex core is not shown explicitly here.
Fig. 4 (right): Schematics of device for large-scale topological quantum computation.
Further information
Publication/Affiliation
- Nano-Electronics Materials Unit, International Center for Materials Nanoarchitectonics (MANA), National Institute for Materials Science (NIMS)
- Department of Physics, Shaoxing University, China
Contact information
For more detail about research
Xiao Hu, MANA Principal Investigator
E-mail: <HU.Xiao

TEL: +81-29-860-489
For general inquiry
Email: pr

TEL:+81-29-859-2026 FAX:+81-29-859-2017