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High-resolution ghost image and ghost diffraction experiments with thermal light

High-resolution ghost image and ghost diffraction experiments are performed by using a single classical source of pseudothermal speckle light divided by a beam splitter. Passing from the image to the diffraction result solely relies on changing the optical setup in the reference arm, while leaving t...

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Published in:Physical review letters 2005-05, Vol.94 (18), p.183602.1-183602.4, Article 183602
Main Authors: FERRI, F, MAGATTI, D, GATTI, A, BACHE, M, BRAMBILLA, E, LUGIATO, L. A
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cited_by cdi_FETCH-LOGICAL-c436t-a227d2f3175d7aa3861a37199f40a8539b3e2f4c5b675c90fa4530b40dfc8cd93
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description High-resolution ghost image and ghost diffraction experiments are performed by using a single classical source of pseudothermal speckle light divided by a beam splitter. Passing from the image to the diffraction result solely relies on changing the optical setup in the reference arm, while leaving the object arm untouched. The product of spatial resolutions of the ghost image and ghost diffraction experiments is shown to overcome a limit which seemed to be achievable only with entangled photons.
doi_str_mv 10.1103/PhysRevLett.94.183602
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source American Physical Society:Jisc Collections:APS Read and Publish 2023-2025 (reading list)
subjects Exact sciences and technology
Fundamental areas of phenomenology (including applications)
Nonclassical field states
squeezed, antibunched and sub-poissonian states
operational definitions of the phase of the field
phase measurements
Optics
Physics
Quantum optics
title High-resolution ghost image and ghost diffraction experiments with thermal light
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