Coherent imaging of a pure phase object with classical incoherent light
Abstract
By using the ghost imaging technique, we experimentally demonstrate the reconstruction of the diffraction pattern of a {\em 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 (m 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.
Cite
@article{arxiv.quant-ph/0604043,
title = {Coherent imaging of a pure phase object with classical incoherent light},
author = {M. Bache and D. Magatti and A. Gatti and E. Brambilla and F. Ferri and L. A. Lugiato},
journal= {arXiv preprint arXiv:quant-ph/0604043},
year = {2007}
}
Comments
13 pages, 11 figures. Published in Physical Review A. Replaced version fixes some problems with Figs. 1, 4 and 10