Design of CWDM multiplexers based on series coupled ring resonators: analysis, potential and prospects on MEMS fabrication technologies
Autor: | Tarik Bourouina, Ahmed Hisham Morshed, Diaa Khalil, Khaled Hassan, Maurine Malak, Hanan Anis |
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Rok vydání: | 2010 |
Předmět: |
Microelectromechanical systems
Engineering business.industry Electrical engineering Condensed Matter Physics Multiplexer Electronic Optical and Magnetic Materials Resonator Hardware and Architecture Wavelength-division multiplexing Insertion loss Electrical and Electronic Engineering business Passband Coupling coefficient of resonators Electronic circuit |
Zdroj: | Microsystem Technologies. 16:1139-1156 |
ISSN: | 1432-1858 0946-7076 |
DOI: | 10.1007/s00542-010-1050-8 |
Popis: | New designs for a 1 × 4 and a 1 × 8 CWDM multiplexers based on cascaded groups of series coupled ring resonators (Little et al. in J Lightwave Technol 15:998–1005, 1997; IEEE Photon Technol Lett 10:2263–2265, 2004; Hryniewicz et al. in IEEE Photon Technol Lett 12:320–322, 2000) are presented. Compared to other integrated optical alternatives such as MMI phasars (Paiam and MacDonald in Appl Opt 36: 5097–5108, 1997), cascaded Mach–Zehnder interferometers (Wang and He in J Lightwave Technol 23:1284–1290, 2005) and cascaded AWG (Dragone in IEEE Photon Technol Lett 3:812–815, 1991; Uetsuka in IEEE J Sel Top Quant Electron 10:393–402, 2004), the proposed circuits offer superior performance in their very sharp roll-off factor that exceeds 0.75, their reduced crosstalk level that lies below −60 dB and their negligible insertion loss for the 1 × 4 design. For the 1 × 8 design, the worst case insertion loss is 4 dB. However, the performances obtained exhibit passband ripples in the order of 5 dB, and besides, they are not very tolerant to fabrication errors. Being designed for SOI technology, the proposed circuits are compact as the circuit areas are 130 × 130 and 90 × 150 μm2 for the 1 × 4 and 1 × 8 designs, respectively. They also have a high potential for MEMS tunability. |
Databáze: | OpenAIRE |
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