Experimental demonstration of topological error correction
Abstract
Scalable quantum computing can only be achieved if qubits are manipulated fault-tolerantly. Topological error correction - a novel method which combines topological quantum computing and quantum error correction - possesses the highest known tolerable error rate for a local architecture. This scheme makes use of cluster states with topological properties and requires only nearest-neighbour interactions. Here we report the first experimental demonstration of topological error correction with an eight-photon cluster state. It is shown that a correlation can be protected against a single error on any qubit, and when all qubits are simultaneously subjected to errors with equal probability, the effective error rate can be significantly reduced. This demonstrates the viability of topological error correction. Our work represents the first experimental effort to achieve fault-tolerant quantum information processing by exploring the topological properties of quantum states.
Cite
@article{arxiv.1202.5459,
title = {Experimental demonstration of topological error correction},
author = {Xing-Can Yao and Tian-Xiong Wang and Hao-Ze Chen and Wei-Bo Gao and Austin G. Fowler and Robert Raussendorf and Zeng-Bing Chen and Nai-Le Liu and Chao-Yang Lu and You-Jin Deng and Yu-Ao Chen and Jian-Wei Pan},
journal= {arXiv preprint arXiv:1202.5459},
year = {2012}
}
Comments
11 pages, 6 figures in main text. arXiv admin note: text overlap with arXiv:0905.1542