arXiv · 1703.01011
Scalable symmetry detector and its applications by using beam splitters and weak nonlinearities
Abstract
We describe a method to detect twin-beam multiphoton entanglement based on a beam splitter and weak nonlinearities. For the twin-beam four-photon entanglement, we explore a symmetry detector. It works not only for collecting two-pair entangled states directly from the spontaneous parametric down-conversion process, but also for purifying them by cascading these symmetry detectors. Surprisingly, by calculating the iterative coefficient and the success probability we show that with a few iterations the desired two-pair can be obtained from a class of four-photon entangled states. We then generalize the symmetry detector to $n$-pair emissions and show that it is capable of determining the number of the pairs emitted indistinguishably from the spontaneous parametric down-conversion source, which may contribute to explore multipair entanglement with a large number of photons.
Explore related subjects
Keep this discovery
Yingqiu He, Dong Ding, Fengli Yan, Ting Gao. 2017-03-03. Scalable symmetry detector and its applications by using beam splitters and weak nonlinearities. https://doi.org/10.1038/s41598-017-15691-0
Cite the original work for its findings. Save a collection to share your selection of sources.