Coherent imaging of a pure phase object with classical incoherent light

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Abstract

By using the ghost imaging technique, we experimentally demonstrate the reconstruction of the diffraction pattern of a pure phase object by using the classical correlation of incoherent thermal light split on a beam splitter. The results once again underline that entanglement is not a necessary feature of ghost imaging. The light we use is spatially highly incoherent with respect to the object (2 μm speckle size) and is produced by a pseudo-thermal source relying on the principle of near-field scattering. We show that in these conditions no information on the phase object can be retrieved by only measuring the light that passed through it, neither in a direct measurement nor in a Hanbury Brown-Twiss (HBT) scheme. In general, we show a remarkable complementarity between ghost imaging and the HBT scheme when dealing with a phase object. © 2006 The American Physical Society.

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Bache, M., Magatti, D., Ferri, F., Gatti, A., Brambilla, E., & Lugiato, L. A. (2006). Coherent imaging of a pure phase object with classical incoherent light. Physical Review A - Atomic, Molecular, and Optical Physics, 73(5). https://doi.org/10.1103/PhysRevA.73.053802

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