arXiv · 1205.4585
A probabilistic phase-insensitive optical squeezer in peaceful coexistence with causality
Abstract
A non trace-preserving map describing a probabilistic but heralded noiseless linear amplifier has recently been proposed and experimentally demonstrated. Here, we exhibit another remarkable feature of this peculiar transformation, namely its ability to serve as a universal single-mode squeezer regardless of the quadrature that is initially squeezed. Hence, it acts as an heralded phase-insensitive optical squeezer, conserving the signal-to-noise ratio just as a phase-sensitive optical amplifier but for all quadratures at the same time, which may offer new perspectives in quantum optical communications. Although this ability to squeeze all quadratures seemingly opens a way to instantaneous signaling by circumventing the quantum no-cloning theorem, we explain the subtle mechanism by which the probability for such a causality violation vanishes, even on an heralded basis.
Explore related subjects
Keep this discovery
C. N. Gagatsos, E. Karpov, N. J. Cerf. 2012-05-21. A probabilistic phase-insensitive optical squeezer in peaceful coexistence with causality. https://doi.org/10.1103/physreva.86.012324
Cite the original work for its findings. Save a collection to share your selection of sources.