This study reports the design and analysis of a plasmonic sensor based on a heavily doped silicon and metallic grating structure working in the mid-infrared region. The numerical results show that the reflection spectrum of the phosphorous-doped Si grating structure with a dopant concentration of 1 x 20(20) has a sharp asymmetric Fano resonance dip, which is strongly dependent on the refractive index change in the surroundings. It yields a sensitivity of 8000 nm/RIU (refractive index unit) and 950 nm/RIU working in the air and water media, respectively, very high values compared with that of existing devices. Moreover, the Fano resonance caused by coupling of the Wood-Rayleigh anomaly and surface plasmon resonances is demonstrated by calcul...
Abstract A refractive index sensor based on Fano resonances in metal-insulator-metal (MIM) waveguide...
In this paper, a new refractive index sensor based on Fano resonance is introduced. It is mainly com...
In this paper, multiple Fano resonances preferred in the refractive index sensing area are achieved ...
The existence of surface plasmon polaritons in doped silicon micro-scale structures has opened up ne...
We proposed an ultra-sensitive refractive index sensor by using indium-doped cadmium oxide as a plas...
High-sensitivity plasmonic refractive index sensors show great applications in the areas of biomedic...
We studied mid-infrared sensors based on the wavelength shift of Surface Plasmon Polariton resonance...
Fano resonances are numerically predicted in an ultracompact plasmonic structure, comprising a metal...
We theoretically demonstrate an approach to generate the double narrow Fano resonances via diffracti...
A surface plasmon polariton refractive index sensor based on Fano resonances in metal–insulator–meta...
A surface plasmon polariton refractive index sensor based on Fano resonances in metal-insulator-meta...
Abstract Sensing in the mid infrared spectral range is highly desirable for the detection and monito...
To reduce the loss of the metal–insulator–metal waveguide structure in the near-infrared region, a p...
This paper proposes a novel nano-sized refractive index sensor based on the Fano resonance phenomeno...
A refractive index sensor based on metal-insulator-metal (MIM) waveguides coupled double rectangular...
Abstract A refractive index sensor based on Fano resonances in metal-insulator-metal (MIM) waveguide...
In this paper, a new refractive index sensor based on Fano resonance is introduced. It is mainly com...
In this paper, multiple Fano resonances preferred in the refractive index sensing area are achieved ...
The existence of surface plasmon polaritons in doped silicon micro-scale structures has opened up ne...
We proposed an ultra-sensitive refractive index sensor by using indium-doped cadmium oxide as a plas...
High-sensitivity plasmonic refractive index sensors show great applications in the areas of biomedic...
We studied mid-infrared sensors based on the wavelength shift of Surface Plasmon Polariton resonance...
Fano resonances are numerically predicted in an ultracompact plasmonic structure, comprising a metal...
We theoretically demonstrate an approach to generate the double narrow Fano resonances via diffracti...
A surface plasmon polariton refractive index sensor based on Fano resonances in metal–insulator–meta...
A surface plasmon polariton refractive index sensor based on Fano resonances in metal-insulator-meta...
Abstract Sensing in the mid infrared spectral range is highly desirable for the detection and monito...
To reduce the loss of the metal–insulator–metal waveguide structure in the near-infrared region, a p...
This paper proposes a novel nano-sized refractive index sensor based on the Fano resonance phenomeno...
A refractive index sensor based on metal-insulator-metal (MIM) waveguides coupled double rectangular...
Abstract A refractive index sensor based on Fano resonances in metal-insulator-metal (MIM) waveguide...
In this paper, a new refractive index sensor based on Fano resonance is introduced. It is mainly com...
In this paper, multiple Fano resonances preferred in the refractive index sensing area are achieved ...