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Fault-tolerant fermionic quantum computation based on color code

Quantum Physics 2018-08-08 v2

Abstract

An important approach to the fault-tolerant quantum computation is protecting the logical information using the quantum error correction. Usually, the logical information is in the form of logical qubits, which are encoded in physical qubits using quantum error correction codes. Compared with the qubit quantum computation, the fermionic quantum computation has advantages in quantum simulations of fermionic systems, e.g. molecules. In this paper, we show that the fermionic quantum computation can be universal and fault-tolerant if we encode logical Majorana fermions in physical Majorana fermions. We take a color code as an example to demonstrate the universal set of fault-tolerant operations on logical Majorana fermions, and we numerically find that the fault-tolerance threshold is about 0.8%.

Keywords

Cite

@article{arxiv.1709.06245,
  title  = {Fault-tolerant fermionic quantum computation based on color code},
  author = {Ying Li},
  journal= {arXiv preprint arXiv:1709.06245},
  year   = {2018}
}

Comments

13 pages, 6 figures and 1 table; Version 2: References are updated