scholarly journals Temperature Sensor Based on Periodically Tapered Optical Fibers

Sensors ◽  
2021 ◽  
Vol 21 (24) ◽  
pp. 8358
Author(s):  
Bartlomiej Guzowski ◽  
Mateusz Łakomski

In this paper, the fabrication and characterization of a temperature sensor based on periodically tapered optical fibers (PTOF) are presented. The relation between the geometry of the sensors and sensing ability was investigated in order to find the relatively simple structure of a sensor. Four types of PTOF structures with two, four, six and eight waists were manufactured with the fusion splicer. For each PTOF type, the theoretical free spectral range (FSR) was calculated and compared with measurements. The experiments were conducted for a temperature range of 20–70 °C. The results proved that the number of the tapered regions in PTOF is crucial, because some of the investigated structures did not exhibit the temperature response. The interference occurring inside the structures with two and four waists was found be too weak and, therefore, the transmission dip was hardly visible. We proved that sensors with a low number of tapered regions cannot be considered as a temperature sensor. Sufficiently more valuable results were obtained for the last two types of PTOF, where the sensor’s sensitivity was equal to 0.07 dB/°C with an excellent linear fitting (R2 > 0.99). The transmission dip shift can be described by a linear function (R2 > 0.97) with a slope α > 0.39 nm/°C.

AIP Advances ◽  
2021 ◽  
Vol 11 (6) ◽  
pp. 065130
Author(s):  
Henning Fouckhardt ◽  
Christoph Doering ◽  
Michael Jaax ◽  
Bert Laegel

Author(s):  
Anubhav Srivastava ◽  
Flavio Esposito ◽  
Joao M. B. Pereira ◽  
Stefania Campopiano ◽  
Agostino Iadicicco

2016 ◽  
Vol 58 (4) ◽  
pp. 798-803 ◽  
Author(s):  
B. Musa ◽  
Y. Mustapha Kamil ◽  
M. H. Abu Bakar ◽  
A. S. M. Noor ◽  
A. Ismail ◽  
...  

2007 ◽  
Vol 1044 ◽  
Author(s):  
Chun-I Wu ◽  
Edward J. Timm ◽  
Fei Ren ◽  
Bradley D. Hall ◽  
Jennifer Ni ◽  
...  

AbstractThermoelectric modules are of great interest for power generation applications where temperature gradients of approximately 500K exist, and hot side temperatures near 800K. The fabrication of such modules requires optimization of the material compositions, low contact resistivities, and low thermal loss.AgPbmSbTe2+m (LAST) and Ag(Pb1-xSnx)m SbTe2+m (LASTT) compounds are among the best known materials appropriate for this temperature range. Various measurement systems have been developed and used to characterize bulk samples in the LAST and LASTT systems within this operating temperature range. From the characterized data, modeling of modules based on these materials and segmented legs using LAST(T) with Bi2Te3 have been used to identify the optimal geometry for the individual legs, and the length of the Bi2Te3 segments. We have segmented LAST(T) with Bi2Te3 and achieved contact resistivities of less than 10 μΩ•cm2.Here we give a detailed presentation on the procedures used in the fabrication of thermoelectric generators based on LAST, LASTT, and segmented with Bi2Te3 materials. We also present the output data on these generators.


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