You have requested a machine translation of selected content from our databases. This functionality is provided solely for your convenience and is in no way intended to replace human translation. Neither SPIE nor the owners and publishers of the content make, and they explicitly disclaim, any express or implied representations or warranties of any kind, including, without limitation, representations and warranties as to the functionality of the translation feature or the accuracy or completeness of the translations.
Translations are not retained in our system. Your use of this feature and the translations is subject to all use restrictions contained in the Terms and Conditions of Use of the SPIE website.
26 June 2017Graphene based multimode interference coupler as an optical refractive index sensor based on nonlinear modal propagation analysis
The objective of this study is to propose and introduce nonlinear modal propagation analysis (NMPA) method being a
viable way to study the application of graphene based multimode interference (MMI) coupler as an optical refractive
index sensor. The purpose of using graphene in this study is because of its high optical nonlinearity as well as having a
small bandgap due to its thin layer. The graphene based sensor can be tuned for highest sensitivity in wavelength and
refractive index to detect the clad material. Graphene will act as the core of the sensor which will be placed on top of the
sample. The clad refractive index value can be obtained by observing and analyzing the change in the output facet
intensity of the sensor. The result also shows that the sensor has high sensitivity due to the usage of graphene and
nonlinear region.
The alert did not successfully save. Please try again later.
M. A. A. Hassim, M. Tajaldini, M. Z. Mat Jafri, "Graphene based multimode interference coupler as an optical refractive index sensor based on nonlinear modal propagation analysis," Proc. SPIE 10330, Modeling Aspects in Optical Metrology VI, 103301R (26 June 2017); https://doi.org/10.1117/12.2270378