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Analysis of Bragg reflection waveguides with finite cladding: An accurate matrix method formulation
Authors:Sonali Dasgupta  Ajoy Ghatak
Affiliation:a Department of Physics, Indian Institute of Technology Delhi, New Delhi 110016, India
b Department of Electrical Engineering, IILM Academy of Higher Learning, Greater Noida 201306, India
c Erasmus Mundas Visiting Scholar on Photonics, School of Engineering and Physical Sciences, Heriot Watt University, Edinburgh EH14 4AS, Scotland, United Kingdom
Abstract:Ideal Bragg reflection waveguides (BRWs) are assumed to have an infinitely extended periodic cladding whereas in practice, the cladding of BRWs is of a finite extent. Bloch theorem is widely used to analyze the propagation characteristics of the BRWs. Since Bloch theorem is ideally valid only for an infinitely extended periodic medium, its application to study such BRWs is an approximation. We present a matrix method for a more accurate analysis of finite-clad BRWs and estimate the extent of errors involved in the values of the propagation constant obtained by the Bloch wave formalism. The proposed method can be used to obtain the mode effective indices as well as the radiation loss of a finite-clad BRW without resorting to solving any complex transcendental equation. In addition, since the method does not inherently assume a periodic cladding, it can also be used to analyze symmetric multi-channel BRWs, chirped structures and directional couplers.
Keywords:Bragg reflection waveguides   Planar waveguides   Bloch theorem
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