Silicon and silicon nitride photonic circuits for spectroscopic sensing on-a-chip [Invited]

Кремниевые и нитрид-кремниевые фотонные схемы для спектроскопического сенсинга на кристалле [Приглашённый доклад]
Ananth Z. Subramanian, Eva Ryckeboer, Ashim Dhakal, Frédéric Peyskens, Aditya Malik, Bart Kuyken, Haolan Zhao, Shibnath Pathak, Alfonso Ruocco, Andreas De Groote, Pieter Wuytens, Daan Martens, François Léo, Weiqiang Xie, Utsav D. Dave, Muhammad Muneeb, Pol Van Dorpe, Joris Van Campenhout, Wim Bogaerts, Peter Bienstman, Nicolas Le Thomas, Dries Van Thourhout, Zeger Hens, Günther Roelkens, Roel Baets
2015-08-26

on-chip spectrometerssilicon nitride photonicssilicon photonic circuitsspectroscopic sensingsurface-enhanced Raman spectroscopy
There is a rapidly growing demand to use silicon and silicon nitride (Si3N4) integrated photonics for sensing applications, ranging from refractive index to spectroscopic sensing. By making use of advanced CMOS technology, complex miniaturized circuits can be easily realized on a large scale and at a low cost covering visible to mid-IR wavelengths. In this paper we present our recent work on the development of silicon and Si3N4-based photonic integrated circuits for various spectroscopic sensing applications. We report our findings on waveguide-based absorption, and Raman and surface enhanced Raman spectroscopy. Finally we report on-chip spectrometers and on-chip broadband light sources covering very near-IR to mid-IR wavelengths to realize fully integrated spectroscopic systems on a chip. © 2015 Chinese Laser Press.
1
On-chip spectrometers and broadband light sources covering very near-infrared to mid-infrared wavelengths support fully integrated spectroscopic systems.
2
Silicon and silicon nitride integrated photonics enable miniaturized, scalable, low-cost sensing circuits using advanced CMOS technology.
3
The paper presents recent development results for silicon- and silicon-nitride-based photonic circuits targeting multiple spectroscopic sensing applications.
4
The reported platforms support sensing across visible to mid-infrared wavelengths, including refractive-index and spectroscopic applications.
5
The work demonstrates waveguide-based absorption spectroscopy as well as Raman and surface-enhanced Raman spectroscopy on photonic integrated circuits.

silicon and silicon nitride (Si3N4) photonic integrated circuits for on-chip spectroscopic sensing

spectroscopic sensing capabilities, including waveguide-based absorption, Raman and surface-enhanced Raman spectroscopy, and integrated spectrometers and broadband light sources spanning very near-IR to mid-IR wavelengths

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Publication Date
2015-08-26
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Authors
Ananth Z. Subramanian
Eva Ryckeboer
Ashim Dhakal
Frédéric Peyskens
Aditya Malik
Bart Kuyken
Haolan Zhao
Shibnath Pathak
Alfonso Ruocco
Andreas De Groote
Pieter Wuytens
Daan Martens
François Léo
Weiqiang Xie
Utsav D. Dave
Muhammad Muneeb
Pol Van Dorpe
Joris Van Campenhout
Wim Bogaerts
Peter Bienstman
Nicolas Le Thomas
Dries Van Thourhout
Zeger Hens
Günther Roelkens
Roel Baets
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