English

Experimental detection of quantum channel capacities

Quantum Physics 2017-09-27 v2

Abstract

We present an effcient experimental procedure that certifies non vanishing quantum capacities for qubit noisy channels. Our method is based on the use of a fixed bipartite entangled state, where the system qubit is sent to the channel input. A particular set of local measurements is performed at the channel output and the ancilla qubit mode, obtaining lower bounds to the quantum capacities for any unknown channel with no need of a quantum process tomography. The entangled qubits have a Bell state configuration and are encoded in photon polarization. The lower bounds are found by estimating the Shannon and von Neumann entropies at the output using an optimized basis, whose statistics is obtained by measuring only the three observables σxσx\sigma_{x}\otimes\sigma_{x}, σyσy\sigma_{y}\otimes\sigma_{y} and σzσz\sigma_{z}\otimes\sigma_{z}.

Keywords

Cite

@article{arxiv.1612.07754,
  title  = {Experimental detection of quantum channel capacities},
  author = {Álvaro Cuevas and Massimiliano Proietti and Mario Arnolfo Ciampini and Stefano Duranti and Paolo Mataloni and Massimiliano F. Sacchi and Chiara Macchiavello},
  journal= {arXiv preprint arXiv:1612.07754},
  year   = {2017}
}

Comments

5 pages and 3 figures in the principal article, and 4 pages in the supplementary material

R2 v1 2026-06-22T17:32:46.331Z