Title :
D3. Optical coupling of cylindrical micromirrors in micro-optical benches
Author :
Sabry, Yasser M. ; Bourouina, Tarik ; Khalil, Diaa
Author_Institution :
Fac. of Eng., Ain Shams Univ., Cairo, Egypt
Abstract :
Free-space optical coupling is a critical performance feature in micro-optical benches, where coupling elements are designed to mitigate optical beam divergence phenomena associated with Gaussian beam propagation and to achieve phase/mode matching. In this paper, the free-space coupling of Gaussian beams using cylindrical micromirrors is analyzed. The treatment accounts for the non-idealities including limited mirror aperture and radius of curvature, surface roughness and misalignment between the mirror axis and the optical beam axis. The coupling efficiency is calculated based on the overlap integral and the ABCD transfer matrix. The analysis can treat astigmatic as well as simple stigmatic Gaussian beams. Throughout the whole of our analysis, parameter normalization is used such that our findings are independent of the specific values of the operating wavelength and the Gaussian beam parameters. The analysis is verified with optical measurements on micromachined cylindrical mirrors with radii of curvature of 50 μm and 300 μm.
Keywords :
micromachining; micromirrors; surface roughness; ABCD transfer matrix; Gaussian beam propagation; cylindrical micromirrors; free-space coupling; free-space optical coupling; micro-optical benches; micromachined cylindrical mirrors; mirror axis; optical beam axis; optical beam divergence phenomena; optical measurements; phase/mode matching; size 300 mum; size 50 mum; stigmatic Gaussian beams; surface roughness; Coupling efficiency; DRIE; Gaussian beam; curved mirror; micro-optics; silicon photonics;
Conference_Titel :
Radio Science Conference (NRSC), 2015 32nd National
Conference_Location :
6th of October City
Print_ISBN :
978-1-4799-9945-3
DOI :
10.1109/NRSC.2015.7117847