Title :
Improving the Atmosphere Turbulence Tolerance in Holographic Ghost Imaging System by Channel Coding
Author :
Shengmei Zhao ; Bei Wang ; Longyan Gong ; Yubo Sheng ; Weiwen Cheng ; Xiaoliang Dong ; Baoyu Zheng
Author_Institution :
Inst. of Signal Process. & Transm., Nanjing Univ. of Posts & Telecommun., Nanjing, China
Abstract :
Atmospheric turbulence (AT) severely cuts down the image resolutions of holographic ghost imaging (HGI) since orbital angular momentum (OAM) entangled states are associated with the spatial distribution of wave-functions. In this paper, we investigate the method to improve AT tolerance in HGI system. Since Reed-Solomon (RS) codes are important non-binary error correction codes which have strong correcting ability against noise, we use RS codes to develop a RS-coded HGI scheme. In order to verify the improvement quantitatively, we compute and compare the Peak Signal-to-Noise ratio (PSNR) of the reconstructed image in HGI without and with RS codes. The numerical results show that PSNRs go down quickly with the increase of the strength of turbulence, and they are improved greatly by using RS codes. For different grayscale objects, the results show that the improvement by RS codes is enhanced with the increasing correction ability, but it does not work for the same object by enlarging its grayscale to suit for more errors.
Keywords :
Reed-Solomon codes; atmospheric optics; atmospheric turbulence; channel coding; error correction codes; holography; image coding; image enhancement; image reconstruction; image resolution; numerical analysis; AT tolerance; OAM entangled states; PSNR; RS-coded HGI system; Reed-Solomon codes; atmosphere turbulence tolerance; channel coding; correction ability; grayscale objects; holographic ghost imaging; image reconstruction; image resolutions; nonbinary error correction codes; numerical analysis; orbital angular momentum; peak signal-to-noise ratio; spatial distribution; wave-functions; Atmosphere; Error correction codes; Gray-scale; Image reconstruction; Imaging; PSNR; Photonics; Atmosphere turbulence; Reed-Solomon error correction codes; holographic ghost imaging; orbital angular momentum;
Journal_Title :
Lightwave Technology, Journal of
DOI :
10.1109/JLT.2013.2267203