arXiv · 1511.00559
Partially Nondestructive Continuous Detection of Individual Traveling Optical Photons
Abstract
We report the continuous and partially nondestructive measurement of optical photons. For a weak light pulse traveling through a slow-light optical medium (signal), the associated atomic-excitation component is detected by another light beam (probe) with the aid of an optical cavity. We observe strong correlations of $g^{(2)}_{sp}=4.4(5)$ between the transmitted signal and probe photons. The observed (intrinsic) conditional nondestructive quantum efficiency ranges between 13% and 1% (65% and 5%) for a signal transmission range of 2% to 35%, at a typical time resolution of 2.5 $μ$s. The maximal observed (intrinsic) device nondestructive quantum efficiency, defined as the product of the conditional nondestructive quantum efficiency and the signal transmission, is 0.5% (2.4%). The normalized cross-correlation function violates the Cauchy-Schwarz inequality, confirming the non-classical character of the correlations.
Explore related subjects
Keep this discovery
Mahdi Hosseini, Kristin M. Beck, Yiheng Duan, Wenlan Chen, Vladan Vuletić. 2015-11-25. Partially Nondestructive Continuous Detection of Individual Traveling Optical Photons. https://doi.org/10.1103/physrevlett.116.033602
Cite the original work for its findings. Save a collection to share your selection of sources.