Title :
A General Characterizing Method for Ring Resonators Based on Low Coherence Measurement
Author :
Yubo Li ; Chen, Weijian ; Chen, Di ; Zeng, Yuxiao ; Lu, Hongwei ; Yang, Jianyi
Author_Institution :
Dept. of Inf. Sci. & Electron. Eng., Zhejiang Univ., Hangzhou, China
fDate :
3/15/2012 12:00:00 AM
Abstract :
Optical filters are crucial devices for wavelength channel selecting in wavelength-division-multiplexed fiber-optic communication networks. Measuring the inner physical parameters of optical filters is significant for analyzing emerging new and more complex structures. This paper proposed a general and easy-to-operate method to extract physical parameters for complex filter structures with optical low-coherence measurement. By treating optical filters with digital filter concepts and z-transform analysis, we can build the relation between interferogram peak values and transfer function coefficients with brief linear equations. These equations can be used to derive the exact expression of transfer functions, which can manipulate the physical parameters. For a given filter structure, according to relations between transfer functions and physical parameters, the physical parameters could be extracted. This is especially meaningful in the postfabrication process.
Keywords :
digital filters; light interferometry; optical communication equipment; optical filters; optical resonators; optical testing; optical transfer function; wavelength division multiplexing; complex filter structure; digital filter; fiber optic communication network; general characterizing method; interferogram peak value; linear equation; optical filters; optical low coherence measurement; physical parameters; ring resonator; transfer function coefficient; wavelength channel selection; wavelength division multiplexing; z transform analysis; Delay; Digital filters; Optical attenuators; Optical filters; Optical ring resonators; Resonator filters; Transfer functions; ARMA filter; optical low coherence (OLCI); reconstruct parameters; ring resonator;
Journal_Title :
Lightwave Technology, Journal of
DOI :
10.1109/JLT.2011.2181821