Models of reduced-noise, probabilistic linear amplifiers
Abstract
We construct an amplifier that interpolates between a nondeterministic, immaculate linear amplifier and a deterministic, ideal linear amplifier and beyond to nonideal linear amplifiers. The construction involves cascading an immaculate linear amplifier that has amplitude gain with a (possibly) nonideal linear amplifier that has gain . With respect to normally ordered moments, the device has output noise where is the overall amplitude gain and is a noise parameter. When , our devices realize ideal () and nonideal () linear amplifiers. When , these devices work effectively only over a restricted region of phase space and with some subunity success probability . We investigate the performance of our -amplifiers in terms of a gain-corrected probability-fidelity product and the ratio of input to output signal-to-noise ratios corrected for success probability.
Cite
@article{arxiv.1603.03150,
title = {Models of reduced-noise, probabilistic linear amplifiers},
author = {Joshua Combes and Nathan Walk and A. P. Lund and T. C. Ralph and Carlton M. Caves},
journal= {arXiv preprint arXiv:1603.03150},
year = {2016}
}
Comments
14 pages, 10 figures