Walborn S P, Ribeiro P H Souto, Monken C H
Instituto de Física, Universidade Federal do Rio de Janeiro, Rio de Janeiro, Brazil.
Opt Express. 2011 Aug 29;19(18):17308-17. doi: 10.1364/OE.19.017308.
The spatial correlation between down-converted photons allows for non-local spatial filtering when two-photon coincidences are registered. This allows one to non-locally control the visibility of interference fringes, to observe ghost images and interference patterns, and to "retrieve" a coherent quantum image from an incoherent field distribution. We show theoretically that non-local spatial filtering can lead to counter-intuitive effects when the pump beam is no longer given by a Gaussian profile. Namely, increased non-local filtering can actually decrease the visibility of interference fringes, contrary to what has been observed so far. We explain this behavior through the transverse spatial parity entanglement of the down-converted photons.
当记录到双光子符合时,下转换光子之间的空间相关性允许进行非局域空间滤波。这使得人们能够非局域地控制干涉条纹的可见度,观察鬼成像和干涉图样,并从非相干场分布中“检索”出相干量子图像。我们从理论上表明,当泵浦光束不再是高斯分布时,非局域空间滤波会导致反直觉的效应。具体来说,与迄今为止所观察到的情况相反,增加非局域滤波实际上会降低干涉条纹的可见度。我们通过下转换光子的横向空间奇偶纠缠来解释这种行为。