@ARTICLE{Malviya_N._Efficient_2017, author={Malviya, N. and Priye, V.}, volume={vol. 25}, number={No 4}, journal={Opto-Electronics Review}, pages={285-289}, howpublished={online}, year={2017}, publisher={Polish Academy of Sciences (under the auspices of the Committee on Electronics and Telecommunication) and Association of Polish Electrical Engineers in cooperation with Military University of Technology}, abstract={An optimal design of a slot waveguide is presented for realizing an ultrafast optical modulator based on a 220 nm silicon wafer technology. The recipe is to maximize the confinement and interaction between optical power supported by the waveguide and electric field applied through metallic electrodes. As height of waveguide is fixed at 220 nm, the waveguide and slot width are optimized to maximize the confinement factor of optical power. Moreover, metal electrodes tend to make the waveguide lossy, their optimal placement is calculated to reduce the optical loss and enhance the voltage per unit width in the slot. Performance of an optimally designed slot waveguide with metal electrodes as ultrafast modulator is also discussed.}, type={Article}, title={Efficient design of silicon slot waveguide optical modulator}, URL={http://journals.pan.pl/Content/115381/PDF/main.pdf}, keywords={Slot waveguide, Silicon photonics, Electro-optic modulator, Integrated optics}, }