Theoretical analysis of quantum ghost imaging through turbulence
Name
Clifford-Chan-2011-Theoretical analysis of quantum ghost imaging through turbulence.pdf
Size
477.22 KB
Format
Adobe PDF
Checksum (MD5)
a51508b921edd7986acd162f42cfe7c4
Author(s) • • • • • • • • •
Chan, Kam Wai Clifford
Simon, D. S.
Sergienko, A. V.
Dixon, P. Ben
Howland, Gregory A.
Howell, John C.
Eberly, Joseph H.
O’Sullivan, Malcolm N.
Rodenburg, Brandon
Boyd, Robert W.
Date Issued
October 2011
Journal
Physical Review A
Publisher
American Physical Society (APS)
Citation
Chan, Kam Wai Clifford et al. “Theoretical Analysis of Quantum Ghost Imaging Through Turbulence.” Physical Review A 84.4 (2011): n. pag. Web. 16 Feb. 2012. © 2011 American Physical Society
Version
Final published version
Abstract
Atmospheric turbulence generally affects the resolution and visibility of an image in long-distance imaging. In a recent quantum ghost imaging experiment [P. B. Dixon et al. Phys. Rev. A 83 051803 (2011)], it was found that the effect of the turbulence can nevertheless be mitigated under certain conditions. This paper gives a detailed theoretical analysis to the setup and results reported in the experiment. Entangled photons with a finite correlation area and a turbulence model beyond the phase screen approximation are considered.
MIT Department
Massachusetts Institute of Technology. Department of Electrical Engineering and Computer Science
Massachusetts Institute of Technology. Research Laboratory of Electronics
Terms of Use
Article is made available in accordance with the publisher's policy and may be subject to US copyright law. Please refer to the publisher's site for terms of use.
Persistent DSpace Link
DOI of Published Version
https://doi.org/10.1103/PhysRevA.84.043807