In this article, a D-shaped optical fiber refractive index (RI) sensor based on surface plasmon resonance effect is demonstrated. The gold film is placed at the flat portion of the optical fiber along with the sensing analytes of the different RIs to excite the plasmonic interactions. Sensing properties are investigated by using the finite element method. The maximum sensitivity of the proposed sensor is achieved as high as 20863.20 nm/RIU with the maximum resolution of 4.79 × 10−6 RIU and figure of merit of 308.38 RIU−1 for an analyte with RI 1.43 by optimizing the different parameters of the sensor with maximum phase matching between the core mode and surface plasmon mode. The high sensitivity of the sensor offers a promising approach for...
In this paper, we show that light-diffusing fibers (LDF) can be efficiently used as host material fo...
It is presented the fabrication and characterization of optical fiber sensors for refractive index m...
International audienceIn this paper, we present the ambient refractive index (ARI) sensing character...
In this work a plasmonic sensor with a D-Shaped microstructured optical fiber (MOF) is proposed to d...
We propose a highly sensitive novel diamond ring fiber (DRF)-based surface plasmon resonance (SPR) s...
In this paper we propose a gold-plated photonic crystal fiber (PCF) refractive index sensor based on...
A surface plasmon resonance sensor based on double-sided polished microstructured optical fiber with...
In this paper, we numerically design a refractive index-based surface plasmon fiber sensor by exploi...
In this paper, we numerically design a refractive index-based surface plasmon fiber sensor by exploi...
In this paper, we numerically design a refractive index-based surface plasmon fiber sensor by exploi...
In this paper, we numerically design a refractive index-based surface plasmon fiber sensor by exploi...
This paper describes simulation and experimental methods for designing a D-shaped surface plasmon re...
In this work, we fabricate and characterize a surface plasmon resonance sensor based on etched plast...
Abstract A reflective surface plasmon resonance (SPR) sensor based on optical fiber microring is pro...
In this paper, we show that light-diffusing fibers (LDF) can be efficiently used as host material fo...
In this paper, we show that light-diffusing fibers (LDF) can be efficiently used as host material fo...
It is presented the fabrication and characterization of optical fiber sensors for refractive index m...
International audienceIn this paper, we present the ambient refractive index (ARI) sensing character...
In this work a plasmonic sensor with a D-Shaped microstructured optical fiber (MOF) is proposed to d...
We propose a highly sensitive novel diamond ring fiber (DRF)-based surface plasmon resonance (SPR) s...
In this paper we propose a gold-plated photonic crystal fiber (PCF) refractive index sensor based on...
A surface plasmon resonance sensor based on double-sided polished microstructured optical fiber with...
In this paper, we numerically design a refractive index-based surface plasmon fiber sensor by exploi...
In this paper, we numerically design a refractive index-based surface plasmon fiber sensor by exploi...
In this paper, we numerically design a refractive index-based surface plasmon fiber sensor by exploi...
In this paper, we numerically design a refractive index-based surface plasmon fiber sensor by exploi...
This paper describes simulation and experimental methods for designing a D-shaped surface plasmon re...
In this work, we fabricate and characterize a surface plasmon resonance sensor based on etched plast...
Abstract A reflective surface plasmon resonance (SPR) sensor based on optical fiber microring is pro...
In this paper, we show that light-diffusing fibers (LDF) can be efficiently used as host material fo...
In this paper, we show that light-diffusing fibers (LDF) can be efficiently used as host material fo...
It is presented the fabrication and characterization of optical fiber sensors for refractive index m...
International audienceIn this paper, we present the ambient refractive index (ARI) sensing character...