Optical sensors enable quantification of analyte concentrations noninvasively without being affected from electromagnetic fields. The development of single-mode waveguides (WGs) is simple approach; however, limitations in the spatial distribution of the refractive index and the inability to sense multiple samples at the same time. Here, we demonstrate a multi-mode WG model and matrix inversion method (MIM) to improve spatial information in at least one dimension. This method is used to optimize and estimate three external stimulus properties in TE00, TE01 and TM00 multiplexed modes for a semitriangular ring resonator configuration. The multi-mode WG and MIM may have applications in the development of biosensors for multianalyte detection
There exist growing demands for robust, reliable, low-cost and easy-to-use sensor systems capable of...
In this paper we demonstrate the ability to analyze a multiple of miniaturized bus-integrated sensor...
AbstractMeasuring a single analyte in a highly absorptive microfluidic channel has always been a cha...
Abstract Measuring a single analyte in a highly absorptive microfluidic channel has always been a ch...
AbstractMeasuring a single analyte in a highly absorptive microfluidic channel has always been a cha...
Measuring a single analyte in a highly absorptive microfluidic channel has always been a challenge. ...
A refractive index (RI) sensor based on an asymmetric metal-cladding dielectric waveguide structure,...
The present article illustrates the modeling and optimization of a dual-slot waveguide for the appli...
A refractive index (RI) sensor which contains a dielectric cavity composed of two parallel planar wa...
A novel, MMI-based all-fiber structure, which consists of two single-mode fibers and a multimode fib...
Abstract We propose a new kind of microring resonators (MRR) based on 4 × 4 multimode interference (...
There is growing demand for robust, reliable, low cost, and easy to use sensor systems that feature ...
In this work a new multiparameter sensor platform based on lossy mode resonances is presented. The s...
In this work a new multiparameter sensor platform based on lossy mode resonances is presented. The s...
Main objective of this PhD research project has been to explore the potential of Segmented Waveguide...
There exist growing demands for robust, reliable, low-cost and easy-to-use sensor systems capable of...
In this paper we demonstrate the ability to analyze a multiple of miniaturized bus-integrated sensor...
AbstractMeasuring a single analyte in a highly absorptive microfluidic channel has always been a cha...
Abstract Measuring a single analyte in a highly absorptive microfluidic channel has always been a ch...
AbstractMeasuring a single analyte in a highly absorptive microfluidic channel has always been a cha...
Measuring a single analyte in a highly absorptive microfluidic channel has always been a challenge. ...
A refractive index (RI) sensor based on an asymmetric metal-cladding dielectric waveguide structure,...
The present article illustrates the modeling and optimization of a dual-slot waveguide for the appli...
A refractive index (RI) sensor which contains a dielectric cavity composed of two parallel planar wa...
A novel, MMI-based all-fiber structure, which consists of two single-mode fibers and a multimode fib...
Abstract We propose a new kind of microring resonators (MRR) based on 4 × 4 multimode interference (...
There is growing demand for robust, reliable, low cost, and easy to use sensor systems that feature ...
In this work a new multiparameter sensor platform based on lossy mode resonances is presented. The s...
In this work a new multiparameter sensor platform based on lossy mode resonances is presented. The s...
Main objective of this PhD research project has been to explore the potential of Segmented Waveguide...
There exist growing demands for robust, reliable, low-cost and easy-to-use sensor systems capable of...
In this paper we demonstrate the ability to analyze a multiple of miniaturized bus-integrated sensor...
AbstractMeasuring a single analyte in a highly absorptive microfluidic channel has always been a cha...