English

Ideal Quantum Tele-amplification up to a Selected Energy Cut-off using Linear Optics

Quantum Physics 2023-09-14 v4 Optics

Abstract

We introduce a linear optical technique that can implement ideal quantum tele-amplification up to the nthn^\mathrm{th} Fock state, where nn can be any positive integer. Here tele-amplification consists of both quantum teleportation and noiseless linear amplification (NLA). This simple protocol consists of a beam-splitter and an (n+1)(n+1)-splitter, with nn ancillary photons and detection of nn photons. For a given target fidelity, our technique improves success probability and physical resource costs by orders of magnitude over current alternative teleportation and NLA schemes. We show how this protocol can also be used as a loss-tolerant quantum relay for entanglement distribution and distillation.

Keywords

Cite

@article{arxiv.2110.03172,
  title  = {Ideal Quantum Tele-amplification up to a Selected Energy Cut-off using Linear Optics},
  author = {Joshua J. Guanzon and Matthew S. Winnel and Austin P. Lund and Timothy C. Ralph},
  journal= {arXiv preprint arXiv:2110.03172},
  year   = {2023}
}

Comments

6 pages (main) + 16 pages (supplementary), 5 figures (main) + 11 figures (supplementary). Main change is the addition of a new section describing how our scheme still works well given experimental imperfections + additional success probability paragraph

R2 v1 2026-06-24T06:41:28.777Z