2016/03/24 by Vinu R. V, R. V. Vinu, R., Vinu +8
Engineering · Physics and Astronomy · #Advanced Optical Imaging Technologies #Digital Holography and Microscopy #Random lasers and scattering media #physics.optics
paper · pdf · doi:10.48550/arxiv.1603.07430
arxiv created 2016/03/24 · arxiv updated 2016/03/25
Non-invasive and single-shot holographic imaging through complex media is technically challenging due to random light scattering which significantly scrambles optical information. Recently, several methods have been presented to address this issue. However, they require complicated measurements of optical transmission matrices, or existing techniques do only retrieve intensity information. Here we propose and experimentally demonstrate a holographic approach for single-shot imaging through a scattering layer based on digital in-line holography in combination with the autocorrelation of the speckle intensity. Using a simple optical configuration and experimental procedure, the proposed method enables to retrieve the complex amplitude image of an object located at arbitrary planes behind scattering media. The technique has potential applications in biomedical imaging, deep tissue microscopy, and 3D imaging through turbid media.