Mobile QR Code QR CODE : Journal of the Korean Institute of Illuminating and Electrical Installation Engineers

Journal of the Korean Institute of Illuminating and Electrical Installation Engineers

ISO Journal TitleJ Korean Inst. IIIum. Electr. Install. Eng.

References

1 
Hill K. O., Meltz G., 1997, Fiber Bragg Grating Technology Fundamentals and Overview, J. Lightwave Technol., Vol. 15, No. 8, pp. 1263-1276DOI
2 
Vengsarkar A. M., 1996, Long-Period Fiber Gratings as Band-Rejection Filters, J. Lightwave Technol., Vol. 14, No. 1, pp. 58-65DOI
3 
Patrick H. J., Askins C. G., McElhanon R. W., Friebele E. J., 1997, Amplitude Mask Patterned on an Excimer Laser Mirror for High Intensity Writing of Long Period Fibre Gratings, Electron. Lett., Vol. 33, No. 13, pp. 1167-1168DOI
4 
Lin C.-Y., Wang L. A., Chern G.-W., 2001, Corrugated Long-Period Fiber Gratings as Strain Torsion and Bending Sensors, J. Lightwave Technol., Vol. 19, No. 8, pp. 1159-1168Google Search
5 
Rego G., Okhotnikov O., Dianov E., Sulimov V., 2001, High-Temperature Stability of Long-Period Fiber Gratings Produced Using an Electric Arc, J. Lightwave Technol, Vol. 19, No. 10, pp. 1574-1579Google Search
6 
Davis D. D., 1998, Long-Period Fibre Grating Fabrication with Focused CO2 Laser Pulses, Electron. Lett., Vol. 34, No. 3, pp. 302-303DOI
7 
Rao Y. J., 2004, Novel Long-Period Fiber Gratings Written by High-Frequency CO2 Laser Pulses and Applications in Optical Fiber Communication, Opt. Commun., Vol. 229, pp. 209-221DOI
8 
Davis D. D., Gaylord T. K., Glytsis E. N., Mettler S. C., 1999, Very-High-Temperature Stable CO2-laser Induced Long-Period Fibre Gratings, Electron. Lett., Vol. 35, No. 9, pp. 740-742Google Search
9 
Patrick H. J., Kersey A. D., Bucholtz F., 1998, Analysis of the Response of Long Period Fiber Gratings to External Index of Refraction, J. Lightwave Technol, Vol. 16, No. 9, pp. 1606-1612DOI
10 
Wang J.-N., Luo C.-Y., 2012, Long-Period Fiber Grating Sensors for the Measurement of Liquid Level and Fluid- Flow Velocity, Sensors, Vol. 12, pp. 4578-4593DOI
11 
Ye C. C., James S. W., Tatam R. P., 2005, Simultaneous Temperature and Bend Sensing with Long-Period Fiber Gratings, Opt. Lett., Vol. 25, No. 14, pp. 1007-1009DOI
12 
Wang W.-P., 2006, Asymmetric Long Period Fiber Gratings Fabricated by Use of CO2 Laser to Carve Periodic Grooves on the Optical Fiber, Appl. Phys. Lett., Vol. 89, pp. 151105(1-3)DOI
13 
Zhu T., 2009, Highly Sensitive Temperature-Independent Strain Sensor Based on a Long-Period Fiber Grating With a CO2-Laser Engraved Rotary Structure, IEEE Photon. Technol. Lett., Vol. 21, No. 8, pp. 543-545DOI
14 
Khaliq S., James S. W., Tatam R. P., 2002, Enhanced Sensitivity Fibre Optic Long Period Grating Temperature Sensor, Meas. Sci. Technol., Vol. 13, pp. 792-795Google Search
15 
Han K. J., 2004, Simultaneous Measurement of Strain and Temperature Incorporating a Long-Period Fiber Grating Inscribed on a Polarization-Maintaining Fiber, IEEE Photon. Technol. Lett., Vol. 16, No. 9, pp. 2114-2116DOI
16 
Noda J., Okamoto K., Sasaki Y., 1986, Polarization- Maintaining Fibers and Their Applications, J. Lightwave Technol., Vol. LT-4, No. 8, pp. 1071-1089DOI
17 
Ortigosa-Blanch A., 2000, Highly Birefringent Photonic Crystal Fibers, Opt. Lett., Vol. 25, No. 18, pp. 1325-1327DOI
18 
Liu H., 2014, Simultaneous Measurement of Humidity and Temperature Based on a Long-Period Fiber Grating Inscribed in Fiber Loop Mirror, IEEE Sens. J., Vol. 14, No. 3, pp. 893-896DOI