The surface plasmon resonance (SPR) performance of gold coated tilted fiber Bragg gratings (TFBG) at near infrared wavelengths is evaluated as a function of the angle between the tilt plane orientation and the direction of single- and double-sided, nominally 50 nm-thick gold metal depositions. Scanning electron microscope images show that the coating are highly non-uniform around the fiber circumference, varying between near zero and 50 nm. In spite of these variations, the experimental results show that the spectral signature of the TFBG-SPR sensors is similar to that of simulations based on perfectly uniform coatings, provided that the depositions are suitably oriented along the tilt plane direction. Furthermore, it is shown that even a (...
An ultra-thin silver-coated tilted fiber Bragg grating (TFBG) sensor with clear surface plasmon reso...
A near-infrared SPR signature with 4 nm line-width and 70% attenuation is obtained in a TFBG with th...
We demonstrate surface plasmon resonance (SPR) fiber devices based upon ultraviolet inscription of a...
Plasmonic optical fiber sensors are continuously developed for (bio)chemical sensing purposes. Recen...
We present a novel method to prepare optimized metal coatings for infrared Surface Plasmon Resonance...
The transmission spectrum of fiber Bragg gratings with gratings planes tilted at a small angle (2°-1...
We demonstrate the use of tilted fiber gratings to assist with the generation of infrared surface pl...
A miniature surface plasmon resonance sensor is fabricated from a gold-coated standard optical fiber...
The generation of surface plasmon resonances (SPRs) in gold-coated weakly tilted fiber Bragg grating...
The generation of near-IR surface plasmon resonance in gold-coated tilted fiber Bragg gratings is st...
The high-order cladding modes of conventional single mode fiber come in semi-degenerate pairs corres...
We demonstrate the use of tilted fiber gratings to assist the generation of localized infrared surfa...
Tilted fiber Bragg gratings (TFBGs) have shown to be a suitable tool for exciting surface plasmon wa...
A surface plasmon resonance biochemical sensor based on a tilted fiber Bragg grating imprinted in a ...
A fiber twist sensor based on the surface plasmon resonance (SPR) effect of an Au-coated tilted fibe...
An ultra-thin silver-coated tilted fiber Bragg grating (TFBG) sensor with clear surface plasmon reso...
A near-infrared SPR signature with 4 nm line-width and 70% attenuation is obtained in a TFBG with th...
We demonstrate surface plasmon resonance (SPR) fiber devices based upon ultraviolet inscription of a...
Plasmonic optical fiber sensors are continuously developed for (bio)chemical sensing purposes. Recen...
We present a novel method to prepare optimized metal coatings for infrared Surface Plasmon Resonance...
The transmission spectrum of fiber Bragg gratings with gratings planes tilted at a small angle (2°-1...
We demonstrate the use of tilted fiber gratings to assist with the generation of infrared surface pl...
A miniature surface plasmon resonance sensor is fabricated from a gold-coated standard optical fiber...
The generation of surface plasmon resonances (SPRs) in gold-coated weakly tilted fiber Bragg grating...
The generation of near-IR surface plasmon resonance in gold-coated tilted fiber Bragg gratings is st...
The high-order cladding modes of conventional single mode fiber come in semi-degenerate pairs corres...
We demonstrate the use of tilted fiber gratings to assist the generation of localized infrared surfa...
Tilted fiber Bragg gratings (TFBGs) have shown to be a suitable tool for exciting surface plasmon wa...
A surface plasmon resonance biochemical sensor based on a tilted fiber Bragg grating imprinted in a ...
A fiber twist sensor based on the surface plasmon resonance (SPR) effect of an Au-coated tilted fibe...
An ultra-thin silver-coated tilted fiber Bragg grating (TFBG) sensor with clear surface plasmon reso...
A near-infrared SPR signature with 4 nm line-width and 70% attenuation is obtained in a TFBG with th...
We demonstrate surface plasmon resonance (SPR) fiber devices based upon ultraviolet inscription of a...