A Mathematical Model of a Non-uniform Micromechanical Deformation of an Optical Fiber Segment with an Axial Symmetric Surface Stressing

2019 ◽  
Vol 21 (6) ◽  
pp. 331-340
Author(s):  
I.L. Borysenkov ◽  
◽  
A.F. Fedechev ◽  
G.I. Leonovich ◽  
S.V. Kupriyanov ◽  
...  
2013 ◽  
Vol 284-287 ◽  
pp. 2778-2783 ◽  
Author(s):  
Ying Chien Tsai ◽  
Guang Miao Huang ◽  
Jun Hong Chen ◽  
Shih Wei Chen

The concentricity of the optical fiber micro lens affects the coupling efficiency of a laser module a lot. In this paper, the effect of the perpendicularity of the broken edge on the concentricity of the micro optical fiber end-face during the micro polishing process is studied. A mathematical model is derived to describe the variation of the material removal rate (MRR) when the tilt angles and amount of feed of the optical fiber are changed. An experiment is built to measure the concentricity of optical fiber with different tilt angles and feeds. The result shows that both of the dimensionless factor QAB and measured concentricity have the same tendency. The concentricity is better when the tilt angle is smaller and the amount of feed is larger. An improved polishing process is suggested. A good concentricity within 1μm can be achieved when fabricate the double-variable curvatures end-face of the optical fiber.


2021 ◽  
Author(s):  
Arpan Roy ◽  
Sibnath Dey ◽  
Arnab Laha ◽  
Abhijit Biswas ◽  
Somnath Ghosh

2013 ◽  
Vol 710 ◽  
pp. 484-487
Author(s):  
Ning Shan ◽  
Tuan Jie Liu

Optical fiber F-P sensor has several advantages, such as strong anti-interference ability, quick speed and high precision. It is widely applied in detecting fields. But optical fiber F-P sensor deviates from working point easily in practical applications, it leads to output signal attenuation and the decreasing of signal noise ratio. The double wavelength optical fiber F-P sensing system is designed to solve the problem. DE algorithm mathematical model of sensing system is established, meanwhile, a higher orthogonal precision sensing system is optimization designed. The orthogonal error of sensing system is studied. The results show that DE algorithm is correct and reliable. Its run time is shorter and the error is less than 10-3. The optimization objective decreases sharply. When the length of F-P cavity changes 0~2500nm, the orthogonal error of sensing system is less than 5%. It has higher stability and anti-interference ability. These results show that the DE algorithm can be used for the structural optimization design of optical fiber F-P sensor.


2006 ◽  
Author(s):  
Wei-Chih Wang ◽  
Joe Ho ◽  
Per G. Reinhall

2015 ◽  
Vol 5 (1) ◽  
pp. 6
Author(s):  
Anusha Mushtaque ◽  
Abi Waqas Memon ◽  
Zarlish Mushtaq ◽  
Aftab A. Memon ◽  
B. S. Chowdhry

Most of telecommunication traffic (voice and data)around the globe is carried over the optical fiber cable. Theinternational traffic through various countries is carried overoptical fiber cables laid under the sea. Similarly the long-haultraffic within the country is through optical fiber laidunderground. Stress, strain, humidity, temperature, bending atacute angles affects the propagation of light energy in the opticalfiber cable. All such factors increase the optical loss andattenuate the signal. The attenuation, especially in the long-haulcommunication increases the bit error rate and degrades thequality of service. In this paper, different optical losses areanalyzed by setting up several experiments at a single modeoptical fiber spool of 4 km. The optical fiber segment wassubjected to various stress, temperatures and acute bendingconditions. The resulting losses and degradation of the signal wasmeasured using OTDR and Power meter.


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