English

Experimental Realization of a Four-Photon Seven-Qubit Graph State for One-Way Quantum Computation

Quantum Physics 2015-05-28 v2

Abstract

We propose and demonstrate the scaling up of photonic graph state through path qubit fusion. Two path qubits from separate two-photon four-qubit states are fused to generate a two-dimensional seven-qubit graph state composed of polarization and path qubits. Genuine seven-qubit entanglement is verified by evaluating the witness operator. Six qubits from the graph state are used to execute the general two-qubit Deutsch-Jozsa algorithm with a success probability greater than 90%.

Keywords

Cite

@article{arxiv.1105.5211,
  title  = {Experimental Realization of a Four-Photon Seven-Qubit Graph State for One-Way Quantum Computation},
  author = {Sang Min Lee and Hee Su Park and Jaeyoon Cho and Yoonshik Kang and Jae Yong Lee and Heonoh Kim and Dong-Hoon Lee and Sang-Kyung Choi},
  journal= {arXiv preprint arXiv:1105.5211},
  year   = {2015}
}

Comments

4 pages. Supplementary Material is included in the zip file