Event horizons are tunable factories of quantum entanglement
Abstract
That event horizons generate quantum correlations via the Hawking effect is well known. We argue, however, that the creation of entanglement can be modulated as desired, by appropriately illuminating the horizon. We adapt techniques from quantum information theory to quantify the entanglement produced during the Hawking process and show that, while ambient thermal noise (e.g., CMB radiation) degrades it, the use of squeezed inputs can boost the non-separability between the interior and exterior regions in a controlled manner. We further apply our ideas to analog event horizons concocted in the laboratory and insist that the ability to tune the generation of entanglement offers a promising route towards detecting quantum signatures of the elusive Hawking effect.
Keywords
Cite
@article{arxiv.2209.09980,
title = {Event horizons are tunable factories of quantum entanglement},
author = {Ivan Agullo and Anthony J. Brady and Dimitrios Kranas},
journal= {arXiv preprint arXiv:2209.09980},
year = {2022}
}
Comments
Honorable mention for Gravity Research Foundation 2022 Awards for Essays on Gravitation. Comments welcome. (14 pages + 3 figures)