GET THE APP

Evanescent-wave-coupled optical light beam deflector with symmetrical structure
..

Journal of Lasers, Optics & Photonics

ISSN: 2469-410X

Open Access

Evanescent-wave-coupled optical light beam deflector with symmetrical structure


5th International Conference and Exhibition on Lasers, Optics & Photonics

November 28-30, 2016 Atlanta, USA

Hideaki Okayama

Oki Electric Industry Co. Ltd., Japan

Posters & Accepted Abstracts: J Laser Opt Photonics

Abstract :

We describe the waveguide optical deflector using a Y-shaped waveguide coupled to a slab waveguide via gaps between them. An electrode is placed on each arm of the Y-shaped waveguide to control the refractive index. The device can be used in many applications, such as optical switch, printing and imaging. The input light is divided to the two arms of the Y-shaped waveguide. The light propagated in the Y-shaped waveguide is coupled to the light in the slab waveguide through evanescent field. Two lights generated by evanescent field coupling form a narrow collimated light beam in the slab waveguide, whose direction can be steered by changing the refractive index using electrodes. Simple low-capacitance stripe electrodes may enable a fast deflection. A symmetrical light beam with low side lobes is generated by a simple structure. We designed a device for semiconductor material. BPM simulation shows a deflection angle of 2�º at a push-pull refractive index change of around dn/n=3x10-3. An extinction of side lobe lower than -13 dB is attained.

Biography :

Hideaki Okayama has completed his PhD from Waseda University, Japan. He is a Senior Researcher at R&D Center, Oki Electric Industry, Japan. He has published more than 100 papers in journals and conference proceedings.

Email: okayama575@oki.com

Google Scholar citation report
Citations: 279

Journal of Lasers, Optics & Photonics received 279 citations as per Google Scholar report

Journal of Lasers, Optics & Photonics peer review process verified at publons

Indexed In

 
arrow_upward arrow_upward