English

Experimental Quantum Teleportation of a Two-Qubit Composite System

Quantum Physics 2007-06-13 v1

Abstract

Quantum teleportation, a way to transfer the state of a quantum system from one location to another, is central to quantum communication and plays an important role in a number of quantum computation protocols. Previous experimental demonstrations have been implemented with photonic or ionic qubits. Very recently long-distance teleportation and open-destination teleportation have also been realized. Until now, previous experiments have only been able to teleport single qubits. However, since teleportation of single qubits is insufficient for a large-scale realization of quantum communication and computation2-5, teleportation of a composite system containing two or more qubits has been seen as a long-standing goal in quantum information science. Here, we present the experimental realization of quantum teleportation of a two-qubit composite system. In the experiment, we develop and exploit a six-photon interferometer to teleport an arbitrary polarization state of two photons. The observed teleportation fidelities for different initial states are all well beyond the state estimation limit of 0.40 for a two-qubit system. Not only does our six-photon interferometer provide an important step towards teleportation of a complex system, it will also enable future experimental investigations on a number of fundamental quantum communication and computation protocols such as multi-stage realization of quantum-relay, fault-tolerant quantum computation, universal quantum error-correction and one-way quantum computation.

Keywords

Cite

@article{arxiv.quant-ph/0609129,
  title  = {Experimental Quantum Teleportation of a Two-Qubit Composite System},
  author = {Qiang Zhang and Alexander Goebel and Claudia Wagenknecht and Yu-Ao Chen and Bo Zhao and Tao Yang and Alois Mair and Joerg Schmiedmayer and Jian-Wei Pan},
  journal= {arXiv preprint arXiv:quant-ph/0609129},
  year   = {2007}
}

Comments

16pages, 4 figures

R2 v1 2026-07-22T19:57:01.604Z