We report a refractive index (RI) and liquid level sensing system based on a hybrid grating structure comprising of a 45° and an 81° tilted fiber gratings (TFGs) that have been inscribed into a single mode fiber in series. In this structure, the 45°-TFG is used as a polarizer to filter out the transverse electric (TE) component and enable the 81°-TFG operating at single polarization for RI and level sensing. The experiment results show a lower temperature cross-sensitivity, only about 7.33 pm/°C, and a higher RI sensitivity, being around 180 nm/RIU at RI=1.345 and 926 nm/RIU at RI=1.412 region, which are significantly improved in comparison with long period fiber gratings. The hybrid grating structure has also been applied as a liquid level...
The development of excessively tilted fiber gratings (Ex-TFGs) provides a new type of sensing device...
The development of excessively tilted fiber gratings (Ex-TFGs) provides a new type of sensing device...
The development of excessively tilted fiber gratings (Ex-TFGs) provides a new type of sensing device...
We report a refractive index (RI) and liquid level sensing system based on a hybrid grating structur...
We report a refractive index (RI) and liquid level sensing system based on a hybrid grating structur...
We demonstrate a liquid level sensor based on the surrounding medium refractive index (SRI) sensing ...
We demonstrate a liquid level sensor based on the surrounding medium refractive index (SRI) sensing ...
We propose and experimentally demonstrate a hybrid grating, in which an excessively tilted fiber gra...
We propose and experimentally demonstrate a hybrid grating, in which an excessively tilted fiber gra...
We propose and experimentally demonstrate a hybrid grating, in which an excessively tilted fiber gra...
We propose and experimentally demonstrate a hybrid grating, in which an excessively tilted fiber gra...
We experimentally demonstrate an all-fiber loading sensor system based on a 45° and an 81° tilted fi...
We propose and experimentally demonstrate a hybrid grating, in which an excessively tilted fiber gra...
The development of excessively tilted fiber gratings (Ex-TFGs) provides a new type of sensing device...
The development of excessively tilted fiber gratings (Ex-TFGs) provides a new type of sensing device...
The development of excessively tilted fiber gratings (Ex-TFGs) provides a new type of sensing device...
The development of excessively tilted fiber gratings (Ex-TFGs) provides a new type of sensing device...
The development of excessively tilted fiber gratings (Ex-TFGs) provides a new type of sensing device...
We report a refractive index (RI) and liquid level sensing system based on a hybrid grating structur...
We report a refractive index (RI) and liquid level sensing system based on a hybrid grating structur...
We demonstrate a liquid level sensor based on the surrounding medium refractive index (SRI) sensing ...
We demonstrate a liquid level sensor based on the surrounding medium refractive index (SRI) sensing ...
We propose and experimentally demonstrate a hybrid grating, in which an excessively tilted fiber gra...
We propose and experimentally demonstrate a hybrid grating, in which an excessively tilted fiber gra...
We propose and experimentally demonstrate a hybrid grating, in which an excessively tilted fiber gra...
We propose and experimentally demonstrate a hybrid grating, in which an excessively tilted fiber gra...
We experimentally demonstrate an all-fiber loading sensor system based on a 45° and an 81° tilted fi...
We propose and experimentally demonstrate a hybrid grating, in which an excessively tilted fiber gra...
The development of excessively tilted fiber gratings (Ex-TFGs) provides a new type of sensing device...
The development of excessively tilted fiber gratings (Ex-TFGs) provides a new type of sensing device...
The development of excessively tilted fiber gratings (Ex-TFGs) provides a new type of sensing device...
The development of excessively tilted fiber gratings (Ex-TFGs) provides a new type of sensing device...
The development of excessively tilted fiber gratings (Ex-TFGs) provides a new type of sensing device...