Design of Wide-Band Tunable Optical Filters With Cascaded Microring Resonators and Shaped-Finger Comb-Drive Actuators

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Date

2016

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Institute of Electrical and Electronics Engineers Inc.

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Green Open Access

No

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Abstract

Utilizing the Vernier effect, series coupling of multiple microring resonators with different sizes is used to design a wide-band (free spectral range: 36 nm) tunable filter. For index modulators that shift the filter spectrum by changing effective indices through evanescent coupling, silicon waveguides are considered, which make the fabrication simpler. Effects of the index modulator width to the filter characteristics are studied. A narrower modulator (width: 50 nm) does not incur much loss to the resonator, but requires hopping among several bands since its tuning effect is moderate. On the other hand, a wider modulator (width: 100 nm) can cover the full free spectral range without band hopping, but induces severe loss when it is close to the resonator. The shaped-finger comb-drive actuator design method is applied to obtain linear drop channel control. © 2017 Elsevier B.V., All rights reserved.

Description

BME Viking; Budapesti Muszaki es Gazdasagtudomanyi Egyetem; CMP; IEEE Components, Packaging and Manufacturing Technology Society (CPMT); Laboratoire d'Informatique, de Robotique et de Microelectronique de Montpellier (LIRMM); University of Montpellier

Keywords

Comb-Drive Actuator, Microring Resonator, Shaped Finger, Tunable Optical Filter, Vernier Effect, Actuators, Bandpass Filters, Design, Fiber Optic Sensors, Modulators, Optical Filters, Optical Resonators, Resonators, Waveguide Filters, Comb-Drive Actuator, Microring Resonator, Shaped Finger, Tunable Optical Filters, Vernier Effect, Comb Filters

Fields of Science

0211 other engineering and technologies, 0202 electrical engineering, electronic engineering, information engineering, 02 engineering and technology

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-- 18th Symposium on Design, Test, Integration and Packaging of MEMS/MOEMS, DTIP 2016 -- Budapest -- 122735

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1

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5
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