Surface codes: Towards practical large-scale quantum computation 论文

2012Physical Review A引用 2994
Quantum Computing Algorithms and ArchitectureQuantum Information and CryptographyCellular Automata and Applications

详细信息

发表期刊/会议
Physical Review A
发表日期
2012-09-18
发表年份
2012

关键词

Quantum Computing Algorithms and ArchitectureQuantum Information and CryptographyCellular Automata and Applications

摘要

This article provides an introduction to surface code quantum computing. We first estimate the size and speed of a surface code quantum computer. We then introduce the concept of the stabilizer, using two qubits, and extend this concept to stabilizers acting on a two-dimensional array of physical qubits, on which we implement the surface code. We next describe how logical qubits are formed in the surface code array and give numerical estimates of their fault tolerance. We outline how logical qubits are physically moved on the array, how qubit braid transformations are constructed, and how a braid between two logical qubits is equivalent to a controlled-not. We then describe the single-qubit Hadamard, $\stackrel{\ifmmode \hat{}\else \^{}\fi{}}{S}$ and $\stackrel{\ifmmode \hat{}\else \^{}\fi{}}{T}$ operators, completing the set of required gates for a universal quantum computer. We conclude by briefly discussing physical implementations of the surface code. We include a number of Appendices in which we provide supplementary information to the main text.