The temperature sensitivity of Sagnac loop interferometer based on polarization maintaining side-hole fiber
Optics Express, Vol. 15, Issue 13, pp. 7962-7967 (2007)
http://dx.doi.org/10.1364/OE.15.007962
Acrobat PDF (279 KB)
Abstract
The temperature sensitivity of modal birefringence (dB/dT) of different types of polarization-maintaining fibers with side holes was measured using a Sagnac loop interferometer. The thermal expansion coefficient can be varied by controlling the amount of germanium doped in the core region. Using this method, dB/dT could be made higher (~10-7/°C) than that of standard PMFs (~10-8/°C) or comparable to that of standard PMFs (~10-9/°C).
© 2007 Optical Society of America
1. Introduction
K. P. Koo and A. D. Kersey, “Bragg grating-based laser sensors systems with interferometric interrogation and wavelength division multiplexing,” J. Lightwave Technol. 13, 1243–1249 (1995). [CrossRef]
V. Bhatia and A. M. Vengsarkar, “Optical fiber long-period grating sensors,” Opt. Lett. 21, 692–694 (1996). [CrossRef] [PubMed]
Y. Liu, B. Liu, X. Feng, W. Zhang, G. Zhou, S. Yuan, G. Kai, and X. Dong, “High-birefringence fiber loop mirrors and their applications as sensors,” Appl. Opt. 44, 2382–2390 (2005). [CrossRef] [PubMed]
W. Eickhoff, “Temperature sensing by mode - mode interference in birefringent optical fibers,” Opt. Lett. 6, 204–206 (1981). [CrossRef] [PubMed]
M. P. Varnham, A. J. Barlow, and D. N. Payne, and K. Okamoto, “Polarimetric strain gauges using high birefringence fiber,” Electron. Lett. 19, 699–700 (1983). [CrossRef]
2. The birefringence measurement of the fabricated PM side-hole fiber
D. S. Moon, U. C. Paek, and Y. Chung, “Polarization controlled multi-wavelength Er-doped fiber laser using fiber Bragg grating written in few-mode side-hole fiber with an elliptical core,” Opt. Express 13, 5574–5579 (2005). [CrossRef] [PubMed]
B. H. Kim, S. Moon, U. C. Paek, and W. T. Han, “All fiber polarimetric modulation using an electro-optic fiber with internal Pb-Sn electrodes,” Opt. Express 14, 11234–11241 (2006). [CrossRef] [PubMed]
C. S. Kim, Y. G. Han, R. M. Sova, U. C. Paek, Y. Chung, and J. U. Kang, “Optical fiber modal birefringence measurement based on Lyot-Sagnac interferometer,” IEEE Photon. Technol. Lett. 15, 269–271 (2003). [CrossRef]
3. Measurement of temperature sensitivities of modal birefringence (dB/dT) of fabricated PM side-hole fibers using Sagnac loop interferometer
J. Noda, K. Okamoto, and Y. Sasaki, “Polarization-maintaining fibers and their applications,” J. Lightwave Technol. LT-4, 1071–1089 (1986). [CrossRef]
A. Michie, J. Canning, K. Lyytikäinen, M. Åslund, and J. Digweed, “Temperature independent highly birefringent photonic crystal fibre,” Opt. Express 12, 5160–5165 (2004). [CrossRef] [PubMed]
E. De la Rosa, L. A. Zenteno, A. N. Starodumov, and D. Monzon, “All-fiber absolute temperature sensor using an unbalanced high-birefringence Sagnac loop,” Opt. Lett. 22, 481–483 (1997). [CrossRef] [PubMed]
D. H. Kim and J. U. Kang, “Sagnac loop interferometer based on polarization maintaining photonic crystal fiber with reduced temperature sensitivity,” Opt. Express 12, 4490–4495 (2004). [CrossRef] [PubMed]
E. De la Rosa, L. A. Zenteno, A. N. Starodumov, and D. Monzon, “All-fiber absolute temperature sensor using an unbalanced high-birefringence Sagnac loop,” Opt. Lett. 22, 481–483 (1997). [CrossRef] [PubMed]
4. The peak separation versus temperature
5. Conclusion
Acknowledgments
References and links
K. P. Koo and A. D. Kersey, “Bragg grating-based laser sensors systems with interferometric interrogation and wavelength division multiplexing,” J. Lightwave Technol. 13, 1243–1249 (1995). [CrossRef] | |
G. A. Ball, W. W. Morey, and P. K. Cheo, “Single- and multipoint fiber-laser sensors,” IEEE Photon. Technol. Lett. 5, 267–270 (1993). [CrossRef] | |
V. Bhatia and A. M. Vengsarkar, “Optical fiber long-period grating sensors,” Opt. Lett. 21, 692–694 (1996). [CrossRef] [PubMed] | |
Y. Liu, B. Liu, X. Feng, W. Zhang, G. Zhou, S. Yuan, G. Kai, and X. Dong, “High-birefringence fiber loop mirrors and their applications as sensors,” Appl. Opt. 44, 2382–2390 (2005). [CrossRef] [PubMed] | |
E. De, L. Rosa-Cruz, F. Mendoza-Santoyo, A. N. Starodumov, and M. Pacheco, “Temperature-induced changes of sensitivity in the unbalanced Hi-Bi fiber Sagnac interferometer,” Fiber and Int. Opt. 18, 41–48 (1999). [CrossRef] | |
A. N. Starodumov, L. A. Zenteno, D. Monzon, E. De, and L. Rosa, “Fiber Sagnac interferometer temperature sensor,” Appl. Phys. Lett. 70, 19–21 (1997). [CrossRef] | |
W. Eickhoff, “Temperature sensing by mode - mode interference in birefringent optical fibers,” Opt. Lett. 6, 204–206 (1981). [CrossRef] [PubMed] | |
K. S. Chiang and H. Tsuchida, “Dual-sensor technique for extending the dynamic range of a fiber-optic interferometric sensor,” Opt. Lett. 13, 850–852 (1988). [CrossRef] [PubMed] | |
M. P. Varnham, A. J. Barlow, and D. N. Payne, and K. Okamoto, “Polarimetric strain gauges using high birefringence fiber,” Electron. Lett. 19, 699–700 (1983). [CrossRef] | |
K. S. Chiang, H. L. W. Chan, and J. L. Gardner, “Detection of high-frequency ultrasound with a polarization-maintaining fiber,” J. Lightwave Technol. 8, 1221–1227 (1990). [CrossRef] | |
K. S. Chiang, “Temperature sensitivity of coated stress-induced birefringent optical fibers,” Opt. Eng. 36, 999–1007 (1997). [CrossRef] | |
D. S. Moon, U. C. Paek, and Y. Chung, “Polarization controlled multi-wavelength Er-doped fiber laser using fiber Bragg grating written in few-mode side-hole fiber with an elliptical core,” Opt. Express 13, 5574–5579 (2005). [CrossRef] [PubMed] | |
B. H. Kim, S. Moon, U. C. Paek, and W. T. Han, “All fiber polarimetric modulation using an electro-optic fiber with internal Pb-Sn electrodes,” Opt. Express 14, 11234–11241 (2006). [CrossRef] [PubMed] | |
C. S. Kim, Y. G. Han, R. M. Sova, U. C. Paek, Y. Chung, and J. U. Kang, “Optical fiber modal birefringence measurement based on Lyot-Sagnac interferometer,” IEEE Photon. Technol. Lett. 15, 269–271 (2003). [CrossRef] | |
J. Noda, K. Okamoto, and Y. Sasaki, “Polarization-maintaining fibers and their applications,” J. Lightwave Technol. LT-4, 1071–1089 (1986). [CrossRef] | |
A. Barlow and D. Payne, “The stress-optic effect in optical fibers,“ IEEE J. Quantum Electron. QE-19, 834–839 (1983). [CrossRef] | |
A. Michie, J. Canning, K. Lyytikäinen, M. Åslund, and J. Digweed, “Temperature independent highly birefringent photonic crystal fibre,” Opt. Express 12, 5160–5165 (2004). [CrossRef] [PubMed] | |
E. De la Rosa, L. A. Zenteno, A. N. Starodumov, and D. Monzon, “All-fiber absolute temperature sensor using an unbalanced high-birefringence Sagnac loop,” Opt. Lett. 22, 481–483 (1997). [CrossRef] [PubMed] | |
D. H. Kim and J. U. Kang, “Sagnac loop interferometer based on polarization maintaining photonic crystal fiber with reduced temperature sensitivity,” Opt. Express 12, 4490–4495 (2004). [CrossRef] [PubMed] |
OCIS Codes
(060.2280) Fiber optics and optical communications : Fiber design and fabrication
(060.2420) Fiber optics and optical communications : Fibers, polarization-maintaining
(120.5790) Instrumentation, measurement, and metrology : Sagnac effect
ToC Category:
Fiber Optics and Optical Communications
History
Original Manuscript: May 2, 2007
Revised Manuscript: June 7, 2007
Manuscript Accepted: June 8, 2007
Published: June 11, 2007
Citation
Dae Seung Moon, Bok Hyeon Kim, Aoxiang Lin, Guoyong Sun, Young-Geun Han, Won-Taek Han, and Youngjoo Chung, "The temperature sensitivity of Sagnac loop interferometer based on polarization maintaining side-hole fiber," Opt. Express 15, 7962-7967 (2007)
http://www.opticsinfobase.org/oe/abstract.cfm?URI=oe-15-13-7962
Sort: Year | Journal | Reset
References
- K. P. Koo and A. D. Kersey, "Bragg grating-based laser sensors systems with interferometric interrogation and wavelength division multiplexing," J. Lightwave Technol. 13, 1243-1249 (1995). [CrossRef]
- G. A. Ball, W. W. Morey, and P. K. Cheo, "Single- and multipoint fiber-laser sensors," IEEE Photon. Technol. Lett. 5, 267-270 (1993). [CrossRef]
- V. Bhatia and A. M. Vengsarkar, "Optical fiber long-period grating sensors," Opt. Lett. 21, 692-694 (1996). [CrossRef] [PubMed]
- Y. Liu, B. Liu, X. Feng, W. Zhang, G. Zhou, S. Yuan, G. Kai, and X. Dong, "High-birefringence fiber loop mirrors and their applications as sensors," Appl. Opt. 44, 2382-2390 (2005). [CrossRef] [PubMed]
- E. De L. Rosa-Cruz, F. Mendoza-Santoyo, A. N. Starodumov, and M. Pacheco, "Temperature-induced changes of sensitivity in the unbalanced Hi-Bi fiber Sagnac interferometer," Fiber and Int. Opt. 18, 41-48 (1999). [CrossRef]
- A. N. Starodumov, L. A. Zenteno, D. Monzon, and E. DeL. Rosa, "Fiber Sagnac interferometer temperature sensor," Appl. Phys. Lett. 70, 19-21 (1997). [CrossRef]
- W. Eickhoff, "Temperature sensing by mode - mode interference in birefringent optical fibers," Opt. Lett. 6, 204-206 (1981). [CrossRef] [PubMed]
- K. S. Chiang and H. Tsuchida, "Dual-sensor technique for extending the dynamic range of a fiber-optic interferometric sensor," Opt. Lett. 13, 850-852 (1988). [CrossRef] [PubMed]
- M. P. Varnham, A. J. Barlow, D. N. Payne, and K. Okamoto, "Polarimetric strain gauges using high birefringence fiber," Electron. Lett. 19, 699-700 (1983). [CrossRef]
- K. S. Chiang, H. L. W. Chan, and J. L. Gardner, "Detection of high-frequency ultrasound with a polarization-maintaining fiber," J. Lightwave Technol. 8, 1221-1227 (1990). [CrossRef]
- K. S. Chiang, "Temperature sensitivity of coated stress-induced birefringent optical fibers," Opt. Eng. 36, 999-1007 (1997). [CrossRef]
- D. S. Moon, U. C. Paek, and Y. Chung, "Polarization controlled multi-wavelength Er-doped fiber laser using fiber Bragg grating written in few-mode side-hole fiber with an elliptical core," Opt. Express 13, 5574-5579 (2005). [CrossRef] [PubMed]
- B. H. Kim, S. Moon, U. C. Paek, and W. T. Han, "All fiber polarimetric modulation using an electro-optic fiber with internal Pb-Sn electrodes," Opt. Express 14, 11234-11241 (2006). [CrossRef] [PubMed]
- C. S. Kim, Y. G. Han, R. M. Sova, U. C. Paek, Y. Chung, and J. U. Kang, "Optical fiber modal birefringence measurement based on Lyot-Sagnac interferometer," IEEE Photon. Technol. Lett. 15, 269-271 (2003). [CrossRef]
- J. Noda, K. Okamoto, and Y. Sasaki, "Polarization-maintaining fibers and their applications," J. Lightwave Technol. LT-4, 1071-1089 (1986). [CrossRef]
- A. Barlow and D. Payne, "The stress-optic effect in optical fibers," IEEE J. Quantum Electron. QE-19, 834-839 (1983). [CrossRef]
- A. Michie, J. Canning, K. Lyytikäinen, M. Åslund, and J. Digweed, "Temperature independent highly birefringent photonic crystal fibre," Opt. Express 12, 5160-5165 (2004). [CrossRef] [PubMed]
- E. De la Rosa, L. A. Zenteno, A. N. Starodumov, and D. Monzon, "All-fiber absolute temperature sensor using an unbalanced high-birefringence Sagnac loop," Opt. Lett. 22, 481-483 (1997). [CrossRef] [PubMed]
- D. H. Kim and J. U. Kang, "Sagnac loop interferometer based on polarization maintaining photonic crystal fiber with reduced temperature sensitivity," Opt. Express 12, 4490-4495 (2004). [CrossRef] [PubMed]
Cited By |
OSA is able to provide readers links to articles that cite this paper by participating in CrossRef's Cited-By Linking service. CrossRef includes content from more than 3000 publishers and societies. In addition to listing OSA journal articles that cite this paper, citing articles from other participating publishers will also be listed.





OSA is a member of 