Design and Simulation Investigation of Si3N4 Photonics Circuits for Wideband On-Chip Optical Gas Sensing around 2 �m Optical Wavelength

dc.contributor.authorNatnicha Koompai
dc.contributor.authorPapichaya Chaisakul
dc.contributor.authorPichet Limsuwan
dc.contributor.authorXavier Le Roux
dc.contributor.authorLaurent Vivien
dc.contributor.authorDelphine Marris-Morini
dc.date.accessioned2025-07-21T06:05:03Z
dc.date.issued2021-04-03
dc.description.abstractWe theoretically explore the potential of Si3N4 on SiO2 waveguide platform toward a wideband spectroscopic detection around the optical wavelength of 2 μm. The design of Si3N4 on SiO2 waveguide architectures consisting of a Si3N4 slot waveguide for a wideband on-chip spectroscopic sensing around 2 μm, and a Si3N4 multi-mode interferometer (MMI)-based coupler for light coupling from classical strip waveguide into the identified Si3N4 slot waveguides over a wide spectral range are investigated. We found that a Si3N4 on SiO2 slot waveguide structure can be designed for using as optical interaction part over a spectral range of interest, and the MMI structure can be used to enable broadband optical coupling from a strip to the slot waveguide for wideband multi-gas on-chip spectroscopic sensing. Reasons for the operating spectral range of the system are discussed.
dc.identifier.doi10.3390/s21072513
dc.identifier.urihttps://dspace.kmitl.ac.th/handle/123456789/10257
dc.subjectWideband
dc.subjectWaveguide
dc.subjectFree spectral range
dc.subject.classificationPhotonic and Optical Devices
dc.titleDesign and Simulation Investigation of Si3N4 Photonics Circuits for Wideband On-Chip Optical Gas Sensing around 2 �m Optical Wavelength
dc.typeArticle

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