English

Fundamental Limits of Repeaterless Quantum Communications

Quantum Physics 2017-04-27 v8

Abstract

Quantum communications promises reliable transmission of quantum information, efficient distribution of entanglement and generation of completely secure keys. For all these tasks, we need to determine the optimal point-to-point rates that are achievable by two remote parties at the ends of a quantum channel, without restrictions on their local operations and classical communication, which can be unlimited and two-way. These two-way assisted capacities represent the ultimate rates that are reachable without quantum repeaters. By constructing an upperbound based on the relative entropy of entanglement and devising a dimension-independent technique dubbed "teleportation stretching", we establish these capacities for many fundamental channels, namely bosonic lossy channels, quantum-limited amplifiers, dephasing and erasure channels in arbitrary dimension. In particular, we determine the fundamental rate-loss trade-off affecting any protocol of quantum key distribution. Our findings set the ultimate limits of point-to-point quantum communications and provide the most precise and general benchmarks for quantum repeaters.

Keywords

Cite

@article{arxiv.1510.08863,
  title  = {Fundamental Limits of Repeaterless Quantum Communications},
  author = {Stefano Pirandola and Riccardo Laurenza and Carlo Ottaviani and Leonardo Banchi},
  journal= {arXiv preprint arXiv:1510.08863},
  year   = {2017}
}

Comments

REVTeX. Main Text (11 pages), Methods (9 pages) and Supplementary Notes (41 pages)

R2 v1 2026-06-22T11:32:33.365Z