e-ISSN 2231-8526
ISSN 0128-7680
Angie Teo Chen Chen, Mohammad Rakib Uddin and Foo Kui Law
Pertanika Journal of Science & Technology, Volume 29, Issue 2, April 2021
DOI: https://doi.org/10.47836/pjst.29.2.10
Keywords: Carrier injection; distribution of free charges; physical dimensions; rib-based waveguide structure
Published on: 30 April 2021
The simulation of behaviour of the charge distribution and the loss characteristic for rib-waveguide is demonstrated by using silicon-on-insulator (SOI). In this simulation, the rib waveguide is designed at a core width of 450nm, core height of 250nm, rib height of 50nm and buried oxide height of 100nm. These dimensions are set as reference. The aspiration of designing rib waveguide instead of other type of waveguide such as ridge waveguide is from the higher light confinement that can be accomplished by rib waveguide as the refractive index difference is huge and the designing of an active device can be realized. In this analysis, free carrier-injection effect was implemented in the first part of the simulation to study the distribution charges of rib-based waveguide structure based on basic dimensions. In this analysis, electrical voltage was varied from 0V to 1.2V in steps of 0.2V for the analysis of distribution of electron. In the second part of the simulation, four design parameters had been amended which included the core width and height, rib height and buried oxide height. Physical dimensions of the waveguide were altered to achieve smaller device footprint with optimized performance affecting large Free Spectral Range (FSR) and high Q-factor. With proper waveguide physical dimensions design, a good performance Micro-Ring Resonator (MRR) exhibits the principles of wide FSR and Q-factor can be achieved.
Aziz, N. N. A., & Haroon, H., & Razak, H. A. (2016). Compact optical filter based on microring resonator. ARPN Journal of Engineering and Applied Sciences, 11(5), 3320-3323.
Bogaerts, W., Fiers, M., & Dumon, P. (2014). Design challenges in silicon photonics. IEEE Journal of Selected Topics in Quantum Electronics, 20(4), Article 8202008. https: //doi.org/ 10.1109/JSTQE.2013.2295882.
Debnath, K., Thomson, D. J., Zhang, W., Khokhar, A. Z., Littlejohns, C., Byers, J., Mastronardi, L., Husain, M. K., Ibukuro, K., Gardes, F. Y., Reed, G. T., & Saito, S. (2018). All-silicon carrier accumulation modulator based on a lateral metal-oxide-semiconductor capacitor. Photonics Research, 6(5), 373-379. https: //doi.org/10.1364/PRJ.6.000373
Haroon, H., Shaari, S., Menon, P., Mardiana, B., Hanim, A., Arsad, N., Majlis, B., Mukhtar, W., & Abdullah, H. (2012). Design and characterization of multiple coupled microring based wavelength demultiplexer in silicon–on–insulator (SOI). Journal of Nonlinear Optical Physics & Materials, 21(1), Article 1250004. https: //doi.org/10.1142/S021886351250004X
Lim, A. E. J., Song, J., Fang, Q., Li, C., Tu, X., Duan, N., Chen, K. K., Tern, R. P. C., & Liow, T. Y. (2013). Review of silicon photonics foundry efforts. IEEE Journal of Selected Topics in Quantum Electronics, 20(4), 405-416. https: //doi.org/10.1109/JSTQE.2013.2293274
Lim, S. T., Sun, M. J., & Png, C. E. (2015). Silicon optical modulator simulation. Frontiers in Physics, 3, Article 27. https: //doi.org/10.3389/fphy.2015.00027
Lin, Q., Painter, O. J., & Agrawal, G. P. (2007). Nonlinear optical phenomena in silicon waveguides: Modeling and applications. Optics express, 15(25), 16604-16644. https: //doi.org/10.1364/OE.15.016604
Liu, A., Liao, L., Rubin, D., Nguyen, H., Ciftcioglu, B., Chetrit, Y., Izhaky, N., & Paniccia, M. (2007). High-speed optical modulation based on carrier depletion in a silicon waveguide. Optics express, 15(2), 660-668. https: //doi.org/10.1364/OE.15.000660
Marchetti, R., Vitali, V., Lacava, C., Cristiani, I., Giuliani, G., Muffato, V., Fournier, M., Abrate, S., Gaudino, R., Temporiti, E., Carroll, L., & Minzioni, P. (2017). Low-loss micro-resonator filters fabricated in silicon by CMOS-compatible lithographic techniques: design and characterization. Applied Sciences, 7(2), Article 174. https: //doi.org/10.3390/app7020174
Mulyanti, B., Menon, P. S., Shaari, S., Hariyadi, T., Hasanah, L., & Haroon, H. (2014). Design and optimization of coupled Microring Resonators (MRRs) in silicon-on-insulator. Sains Malaysiana, 43(2), 247-252.
Qin, Y., Yu, Y., Wu, W., & Zhang, X. (2016). Integrated tunable optical add/drop filter for polarization and wavelength multiplexed signals. Optics Express, 24(7), 7069-7078. https: //doi.org/10.1364/OE.24.007069
Thomson, D., Zilkie, A., Bowers, J. E., Komljenovic, T., Reed, G. T., Vivien, L., & Nedeljkovic, M. (2016). Roadmap on silicon photonics. Journal of Optics, 18(7), Article 073003. https: //doi.org/10.1088/2040-8978/18/7/073003
VenNatesh, B. S., Britto, E. R. A., & Balaji, S. S. (2016). Overview of Silicon Photonic Signal Processing. Citeseer Sastra University. Retrieved October 4, 2020, from http: //citeseerx.ist.psu.edu/viewdoc/download?doi=10.1.1.857.5778&rep=rep1&type=pdf
ISSN 0128-7680
e-ISSN 2231-8526