The Information Measurement and Characterization of Polarization Coherent Light Based on Stokes Parameters

Article Preview

Abstract:

Polarization coherent optical information has a wide range of applications in information coding, communication and bioassay. Based on the characteristics of polarization coherent light, we introduced a method to measure and which were used for information coding in continuous variables coherent optical communication in this paper. Then we introduced an experimental technique for getting the information of polarized light by analysizing the intensity distribution of polarization state in polarization speckle, and how to apply this technology in the identification and analysis of biological tissues. By analysizing a Mueller matrix which is used to characterize the coherent information obtained from the measurement of the Stokes parameters, we can get some properties of biological tissues.

You might also be interested in these eBooks

Info:

Periodical:

Advanced Materials Research (Volumes 760-762)

Pages:

306-310

Citation:

Online since:

September 2013

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2013 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

[1] J. J. Chen, Z. F. Han, et al. Frontier Progress. Vol. 35(2006), p.789. (In Chinese).

Google Scholar

[2] Y. B. Liao: Polarization Optical (Science Press, Beijing 2003). (In Chinese).

Google Scholar

[3] R. L. Ma: Quantum Cryptography Communication (Science Press, Beijing 2006). (In Chinese).

Google Scholar

[4] D. Elser, T. Bartley, B. Heim, et al: New Journal of Physics. Vol. 11(2009). 045014. pp.1-4.

Google Scholar

[5] W. L. Zhou: Study of Coherent States Quantum Key Distribution Scheme Based on Stokes Parameters, Fuzhou: Fuzhou university, 2011. (In Chinese).

Google Scholar

[6] J. W. Goodman:Speckle Phenomena in Optics: Theory and Applications: Roberts-Company, Colorado, (2006).

Google Scholar

[7] S. Zhang, P. Roulleau, A. Matsuda, M. Takeda and W. Wang. Proc. SPIE. 7790, Interferometry XV: Techniques and Analysis, 77900N, p.2. (California, USA, August 02, 2010).

Google Scholar

[8] L. S. Zhang, J. G. Tian, et al: Acta Scientiarum Naturalium Universitatis Nankaiensis. Vol. 40(2007). p.46. (In Chinese).

Google Scholar

[9] C. Xing, X. T. Lai, et al: Acta Laser Biology Since. Vol. 17(2008). p.119. (In Chinese).

Google Scholar

[10] S. L. Jiao and L. V. Wang : Optics Letters, Vol. 27(2002). pp.101-103.

Google Scholar

[11] Yu. A. Ushenko, O. V. Dubolaov and N. I. Zabolotna. Proc. SPIE. 8001. International Conference on Applications of optics and Photonics. 80010J. pp.5-11. (Braga, Portugal, July 26, 2011).

Google Scholar