Higher-Order Quantum Ghost Imaging with Ultracold Atoms

S. S. Hodgman, W. Bu, S. B. Mann, R. I. Khakimov, A. G. Truscott

    Research output: Contribution to journalArticlepeer-review

    26 Citations (Scopus)

    Abstract

    Ghost imaging is a quantum optics technique that uses correlations between two beams to reconstruct an image from photons that do not interact with the object being imaged. While pairwise (second-order) correlations are usually used to create the ghost image, higher-order correlations can be utilized to improve the performance. In this Letter, we demonstrate higher-order atomic ghost imaging, using entangled ultracold metastable helium atoms from an s-wave collision halo. We construct higher-order ghost images up to fifth order and show that using higher-order correlations can improve the visibility of the images without impacting the resolution. This is the first demonstration of higher-order ghost imaging with massive particles and the first higher-order ghost imaging protocol of any type using a quantum source.

    Original languageEnglish
    Article number233601
    JournalPhysical Review Letters
    Volume122
    Issue number23
    DOIs
    Publication statusPublished - 13 Jun 2019

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