EventsThe 7th International Multidisciplinary Conference on Optofluidics 2017
Published
This submission belongs to the session 02. Optical devices and systems of the event The 7th International Multidisciplinary Conference on Optofluidics 2017
Published date
21 Jul, 2017
Citation
Ahmed M. Othman, Mazen Erfan, Yasser M. Sabry, Sébastien Nazeer, Marwa Ragheb, Diaa Khalil, COMPACT OPTICAL MEMS 1×N BEAM-SPLITTER BASED ON MULTI-MODE INTERFERENCE FOR OPTOFLUIDIC APPLICATIONS, in Proceedings of The 7th International Multidisciplinary Conference on Optofluidics 2017, Singapore, 25 July–28 July 2017, MDPI: Basel, Switzerland, doi: 10.3390/optofluidics2017-04195
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COMPACT OPTICAL MEMS 1×N BEAM-SPLITTER BASED ON MULTI-MODE INTERFERENCE FOR OPTOFLUIDIC APPLICATIONS

Sébastien Nazeer 2
1. Faculty of Engineering, Ain-Shams University, Cairo, EGYPT
2. Si-Ware Systems, Optical MEMS Technology Division, Cairo, EGYPT
Abstract

In this work, we present the design and characterization of a 1xN beam splitter based on an MMI waveguide fabricated on MEMS technology. The proposed structure also has the advantage of allowing the splitter to be used at wavelengths below the 1.1 µm silicon cut off wavelength that is needed for many optofluidic applications. A compact splitter design is achieved by guiding the light in air in a parallel plate waveguide structure with the lowest achievable guiding refractive index, with paired excitation in the input and parabolic tapering in the waveguide width along its length. The structure is simulated at different wavelengths using a wide angle FD-BPM technique. Measurement results of the fabricated structure are also shown at wavelengths of 1310 nm and 980 nm.

Keywords
Beam Splitter
Multimode Interference
MEMS
CELL FORCE MEASUREMENT USING MEMS-BASED MICROPILLAR ARRAYS
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