Imaging through turbulence using compressive coherence sensing.


Autoria(s): Wagadarikar, AA; Marks, DL; Choi, K; Horisaki, R; Brady, DJ
Data(s)

15/03/2010

Formato

838 - 840

Identificador

http://www.ncbi.nlm.nih.gov/pubmed/20237616

196576

Opt Lett, 2010, 35 (6), pp. 838 - 840

http://hdl.handle.net/10161/4230

1539-4794

Idioma(s)

ENG

en_US

Relação

Opt Lett

Optics Letters

Tipo

Journal Article

Cobertura

United States

Resumo

Previous studies have shown that the isoplanatic distortion due to turbulence and the image of a remote object may be jointly estimated from the 4D mutual intensity across an aperture. This Letter shows that decompressive inference on a 2D slice of the 4D mutual intensity, as measured by a rotational shear interferometer, is sufficient for estimation of sparse objects imaged through turbulence. The 2D slice is processed using an iterative algorithm that alternates between estimating the sparse objects and estimating the turbulence-induced phase screen. This approach may enable new systems that infer object properties through turbulence without exhaustive sampling of coherence functions.