polarization beam splitter based on self-collimation of a hybrid photonic crystal

polarization beam splitter based on self-collimation of a hybrid photonic crystal

;F. Bagci;S. Can;B. Akaoglu;A. E. Yilmaz
molecular therapy : the journal of the american society of gene therapy 2014 Vol. 23 pp. 1033-1037
124
bagci2014radioengineeringpolarization

Abstract

A photonic crystal polarization beam splitter based on photonic band gap and self-collimation effects is designed for optical communication wavelengths. The photonic crystal structure consists of a polarization-insensitive self-collimation region and a splitting region. TM- and TE-polarized waves propagate without diffraction in the self-collimation region, whereas they split by 90 degrees in the splitting region. Efficiency of more than 75% for TM- and TE-polarized light is obtained for a polarization beam splitter size of only 17 μm x 17 μm in a wavelength interval of 60 nm including 1.55 μm.

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