Effective-index increase, form birefringence and transition losses in UV-side-illuminated photosensitive fibers
Optics Express, Vol. 9, Issue 11, pp. 546-560 (2001)
http://dx.doi.org/10.1364/OE.9.000546
Acrobat PDF (513 KB)
Abstract
We present a simple variational method for the analysis of UV-side-illuminated single-mode fibers. We use a shiftable, two-dimensional elliptical Gaussian function as a field trial for the fundamental-mode. By this method, the actual UV-induced peak refractive-index increase can be quantitatively related to the measured effective-index increase. The asymmetry of the UV-induced refractive-index profile due to the absorption of the writing UV light causes both form birefringence and transition losses between UV-illuminated and non-illuminated fiber sections. These characteristics are easily calculated from the results of the variational method. We show that UV-illumination of the fiber from two opposite sides reduces both the form birefringence and the transition losses.
© Optical Society of America
[Optical Society of America ]
1 Introduction
K. O. Hill, Y. Fujii, D. C. Johnson, and B. S. Kawasaki, ‘Photosensitivity in optical waveguides: Application to reflection filter fabrication,’ Appl. Phys. Lett. 32, 647–649 (1978). [CrossRef]
A. M. Veng sarkar, P. L. Lemaire, J. B. Judkins, V. Bathia, T. Erdog an, and J. E. Sipe, ‘Long-period fiber gratings as band rejection filters,’ J. Lightwave Technol. 14, 58–65 (1996). [CrossRef]
V. Mizrahi and J. E. Sipe, ‘Optical properties of photosensitive fiber phase gratings,’ J. Lightwave Technol. 11, 1513–1517 (1993). [CrossRef]
D. Johlen, H. Renner, P. Klose, and E. Brinkmeyer, ‘UV-Writingof Two-Mode Sections into Single-Mode Fibres for Hosting Mode-Converting Bragg Gratings,’ IEEE Photon. Technol. Lett. 11, 1015–1017 (1999). [CrossRef]
D. Inniss, Q. Zhong, A. M. Vengsarkar, W. A. Reed, S. G. Kosinski, and P. L. Lemaire, ‘Atomic force microscopy study of uv-induced anisotropy in hydrogen-loaded germanosilicate fibers,’ Appl. Phys. Lett. 65, 1528–1530 (1994). [CrossRef]
A. M. Veng sarkar, Q. Zhong, D. Inniss, W. A. Reed, P. L. Lemaire, and S. G. Kosinski, ‘Birefringencereduction in side-written photoinduced fiber devices by a dual-exposure method,,’ Opt. Lett. 19, 1260–1262 (1994). [CrossRef]
H. Renner, D. Johlen, and E. Brinkmeyer, ‘Modal field deformation and transition losses in UV side-written optical fibers,’ Appl. Opt. 39, 933–940 (2000). [CrossRef]
H. Renner, D. Johlen, and E. Brinkmeyer, ‘Modal field deformation and transition losses in UV side-written optical fibers,’ Appl. Opt. 39, 933–940 (2000). [CrossRef]
H. Renner, ‘Modes of UV-written planar waveguides,’ Opt. Lett , 23, 111–113 (1998). [CrossRef]
H. Renner, D. Johlen, and E. Brinkmeyer, ‘Modal field deformation and transition losses in UV side-written optical fibers,’ Appl. Opt. 39, 933–940 (2000). [CrossRef]
S. Selleri and M. Zoboli, ‘Performance comparison of finite-element approaches for electromagnetic waveguides,’ J. Opt. Soc. Am. A 14, 1460–1466 (1997). [CrossRef]
G. Tartarini and H. Renner, ‘Efficient Finite-Element Analysis of Tilted Open Anisotropic Optical Channel Waveguides,’ IEEE Microwave Guided Wave Lett. 9, 389–391 (1999). [CrossRef]
2 UV-induced refractive-index profiles
A. M. Veng sarkar, Q. Zhong, D. Inniss, W. A. Reed, P. L. Lemaire, and S. G. Kosinski, ‘Birefringencereduction in side-written photoinduced fiber devices by a dual-exposure method,,’ Opt. Lett. 19, 1260–1262 (1994). [CrossRef]
3 Variational analysis using a Gaussian field function
H. Renner, D. Johlen, and E. Brinkmeyer, ‘Modal field deformation and transition losses in UV side-written optical fibers,’ Appl. Opt. 39, 933–940 (2000). [CrossRef]
4 Effective-index increase and field shape
5 Form Birefringence
5.1 Effects of birefringence in fiber gratings
T. Erdogan and V. Mizrahi, ‘Characterization of UV-induced birefringence in photosensitive Ge-doped silica optical fibers,’ J. Opt. Soc. Am. B 11, 416–417 (1994). [CrossRef]
O. Duhem and M. Douay, ‘Effect of birefringence on long-period-grating coupling characteristics,’ Electron. Lett. , 36, 416–417 (2000). [CrossRef]
F. Oullette, ‘Dispersion cancellation usingl inearly chirped Braggg ratingfil ters in optical waveguides,’ Opt. Lett. 12, 847–849 (1987). [CrossRef]
J. L. Philipsen, M. O. Berendt, P. Varming, V. C. Lauridsen, J. H. Povlsen, J. Hübner, M. Kristensen, and B. Palsdottir, ‘Polarisation control of DFB fibre laser usingU V-induced birefringent phase-shift,’ Electron. Lett. 34 678–679 (1998). [CrossRef]
T. Erdogan and V. Mizrahi, ‘Characterization of UV-induced birefringence in photosensitive Ge-doped silica optical fibers,’ J. Opt. Soc. Am. B 11, 416–417 (1994). [CrossRef]
H. Rosenfeldt, Ch. Knothe, R. Ulrich, E. Brinkmeyer, U. Feiste, C. Schubert, J. Berger, R. Ludwig, H. G. Weber, and A. Ehrhardt, ‘Automatic PMD Compensation at 40 Gbit/s and 80 Gbit/s Usinga 3-Dimensional DOP Evaluation for Feedback,’ Proc. Conf. Opt. Fiber Comm. (OFC), Anaheim, USA (Postdeadline Paper PD27), (2001).
A. M. Veng sarkar, P. L. Lemaire, J. B. Judkins, V. Bathia, T. Erdog an, and J. E. Sipe, ‘Long-period fiber gratings as band rejection filters,’ J. Lightwave Technol. 14, 58–65 (1996). [CrossRef]
A. M. Veng sarkar, P. L. Lemaire, J. B. Judkins, V. Bathia, T. Erdog an, and J. E. Sipe, ‘Long-period fiber gratings as band rejection filters,’ J. Lightwave Technol. 14, 58–65 (1996). [CrossRef]
K. O. Hill, B. Malo, K. Vineberg, F. Bilodeau, D. Johnson, and I. Skinner, ‘Efficient mode-conversion in telecommunication fiber using externally written gratings,’ Electron. Lett. 26 pp. 1270–1272 (1990). [CrossRef]
O. Duhem and M. Douay, ‘Effect of birefringence on long-period-grating coupling characteristics,’ Electron. Lett. , 36, 416–417 (2000). [CrossRef]
A. S. Kurkov, M. Douay, O. Duhem, B. Leleu, J. F. Henninot, J. F. Bayon, and L. Rivoallan, ’Long-period fibre gratings as a wavelength selective polarisation element,’ Electron. Lett. 33, 616–617 (1997). [CrossRef]
5.2 Perturbation method for the form birefringence
M. Parent, J. Bures, S. Lacroix, and J. Lapierre, ‘Proprits de polarisation des rflecteurs de Bragg induits par photosensibilit dans les fibres optiques monomodes,’ Appl. Opt. 24, 354–357 (1985). [CrossRef] [PubMed]
K. O. Hill, B. Malo, K. Vineberg, F. Bilodeau, D. Johnson, and I. Skinner, ‘Efficient mode-conversion in telecommunication fiber using externally written gratings,’ Electron. Lett. 26 pp. 1270–1272 (1990). [CrossRef]
A. M. Veng sarkar, Q. Zhong, D. Inniss, W. A. Reed, P. L. Lemaire, and S. G. Kosinski, ‘Birefringencereduction in side-written photoinduced fiber devices by a dual-exposure method,,’ Opt. Lett. 19, 1260–1262 (1994). [CrossRef]
J. Albert, B. Malo, D. C. Johnson, F. Bilodeau, K. O. Hill, J. L. Brebner, and G. Kajrys, ‘Dichroism in the absorption spectrum of photobleached ion-implanted silica,’ Opt. Lett. 18, 1126–1128 (1993). [CrossRef] [PubMed]
T. Meyer, P.-A. Nicati, P. A. Robert, D. Varelas, H. G. Limberger, and R. P. Salathe, ‘Birefringence writing and erasing in ultra-low-birefringence fibers by polarized UV side-exposure: origin and applications,’ Proc. 11th international Conference on Optical Fiber Sensors (OFS’96), Sapporo, Japan, 1997, vol. 1, pp. 368–371.
A. M. Veng sarkar, Q. Zhong, D. Inniss, W. A. Reed, P. L. Lemaire, and S. G. Kosinski, ‘Birefringencereduction in side-written photoinduced fiber devices by a dual-exposure method,,’ Opt. Lett. 19, 1260–1262 (1994). [CrossRef]
T. Meyer, P.-A. Nicati, P. A. Robert, D. Varelas, H. G. Limberger, and R. P. Salathe, ‘Birefringence writing and erasing in ultra-low-birefringence fibers by polarized UV side-exposure: origin and applications,’ Proc. 11th international Conference on Optical Fiber Sensors (OFS’96), Sapporo, Japan, 1997, vol. 1, pp. 368–371.
A. M. Veng sarkar, Q. Zhong, D. Inniss, W. A. Reed, P. L. Lemaire, and S. G. Kosinski, ‘Birefringencereduction in side-written photoinduced fiber devices by a dual-exposure method,,’ Opt. Lett. 19, 1260–1262 (1994). [CrossRef]
T. Erdogan and V. Mizrahi, ‘Characterization of UV-induced birefringence in photosensitive Ge-doped silica optical fibers,’ J. Opt. Soc. Am. B 11, 416–417 (1994). [CrossRef]
T. Meyer, P.-A. Nicati, P. A. Robert, D. Varelas, H. G. Limberger, and R. P. Salathe, ‘Birefringence writing and erasing in ultra-low-birefringence fibers by polarized UV side-exposure: origin and applications,’ Proc. 11th international Conference on Optical Fiber Sensors (OFS’96), Sapporo, Japan, 1997, vol. 1, pp. 368–371.
A. M. Veng sarkar, Q. Zhong, D. Inniss, W. A. Reed, P. L. Lemaire, and S. G. Kosinski, ‘Birefringencereduction in side-written photoinduced fiber devices by a dual-exposure method,,’ Opt. Lett. 19, 1260–1262 (1994). [CrossRef]
T. Meyer, P.-A. Nicati, P. A. Robert, D. Varelas, H. G. Limberger, and R. P. Salathe, ‘Birefringence writing and erasing in ultra-low-birefringence fibers by polarized UV side-exposure: origin and applications,’ Proc. 11th international Conference on Optical Fiber Sensors (OFS’96), Sapporo, Japan, 1997, vol. 1, pp. 368–371.
J. Albert, B. Malo, D. C. Johnson, F. Bilodeau, K. O. Hill, J. L. Brebner, and G. Kajrys, ‘Dichroism in the absorption spectrum of photobleached ion-implanted silica,’ Opt. Lett. 18, 1126–1128 (1993). [CrossRef] [PubMed]
A. M. Veng sarkar, Q. Zhong, D. Inniss, W. A. Reed, P. L. Lemaire, and S. G. Kosinski, ‘Birefringencereduction in side-written photoinduced fiber devices by a dual-exposure method,,’ Opt. Lett. 19, 1260–1262 (1994). [CrossRef]
6 Transition losses
H. Renner, D. Johlen, and E. Brinkmeyer, ‘Modal field deformation and transition losses in UV side-written optical fibers,’ Appl. Opt. 39, 933–940 (2000). [CrossRef]
H. Renner, D. Johlen, and E. Brinkmeyer, ‘Modal field deformation and transition losses in UV side-written optical fibers,’ Appl. Opt. 39, 933–940 (2000). [CrossRef]
7 Conclusions
References and links
K. O. Hill, Y. Fujii, D. C. Johnson, and B. S. Kawasaki, ‘Photosensitivity in optical waveguides: Application to reflection filter fabrication,’ Appl. Phys. Lett. 32, 647–649 (1978). [CrossRef] | |
G. Meltz, W. W. Morey, and W. H. Glenn, ‘Formation of Bragg gratings in optical fibers by transverse holographic method,’ Opt. Lett. 14, 823–825 (1989). [CrossRef] [PubMed] | |
F. Bilodeau, K. O. Hill, B. Malo, D. Johnson, and I. Skinner, ‘Efficient narrow-band LP01–LP02 mode convertors fabricated in photosensitive fiber: Spectral response,’ Electron. Lett. 27, 682–684 (1991). [CrossRef] | |
A. M. Veng sarkar, P. L. Lemaire, J. B. Judkins, V. Bathia, T. Erdog an, and J. E. Sipe, ‘Long-period fiber gratings as band rejection filters,’ J. Lightwave Technol. 14, 58–65 (1996). [CrossRef] | |
V. Mizrahi and J. E. Sipe, ‘Optical properties of photosensitive fiber phase gratings,’ J. Lightwave Technol. 11, 1513–1517 (1993). [CrossRef] | |
D. Johlen, H. Renner, P. Klose, and E. Brinkmeyer, ‘UV-Writingof Two-Mode Sections into Single-Mode Fibres for Hosting Mode-Converting Bragg Gratings,’ IEEE Photon. Technol. Lett. 11, 1015–1017 (1999). [CrossRef] | |
R. Kashyap, Fiber Bragg Gratings (Academic Press, San Diego, 1999). | |
E. Brinkmeyer, D. Johlen, F. Knappe, and H. Renner, ‘Methods for experimental characterization of UV-written gratings and waveguides,’ OSA Trends in Optics and Photonics Vol. 33, Bragg Gratings, Photosensitivity, and Poling in Glass Waveguides, pp. 155–175 (2000) | |
D. Inniss, Q. Zhong, A. M. Vengsarkar, W. A. Reed, S. G. Kosinski, and P. L. Lemaire, ‘Atomic force microscopy study of uv-induced anisotropy in hydrogen-loaded germanosilicate fibers,’ Appl. Phys. Lett. 65, 1528–1530 (1994). [CrossRef] | |
A. M. Veng sarkar, Q. Zhong, D. Inniss, W. A. Reed, P. L. Lemaire, and S. G. Kosinski, ‘Birefringencereduction in side-written photoinduced fiber devices by a dual-exposure method,,’ Opt. Lett. 19, 1260–1262 (1994). [CrossRef] | |
C. De Barros, I. Riant, T. Lopez, and P. Sansonetti, ‘Tapered slanted Bragg grating for low insertion loss gain equalizing filter,’ OSA Technical Digest: Conference on Bragg Gratings, Photosensitivity and Polingi n Glass Waveguides, Stresa, Italy, July 4–6 (paper JW1), (2001). | |
H. Renner, D. Johlen, and E. Brinkmeyer, ‘Modal field deformation and transition losses in UV side-written optical fibers,’ Appl. Opt. 39, 933–940 (2000). [CrossRef] | |
D. Johlen, F. Knappe, H. Renner, and E. Brinkmeyer, ‘UV-Induced Absorption, Scatteringand Transition Losses in UV Side-Written Fibers,’ Proc. Conf. Opt. Fiber Comm. (OFC), San Diego, CA, USA (paper ThD1), (1999). | |
H. Renner, ‘Modes of UV-written planar waveguides,’ Opt. Lett , 23, 111–113 (1998). [CrossRef] | |
S. Selleri and M. Zoboli, ‘Performance comparison of finite-element approaches for electromagnetic waveguides,’ J. Opt. Soc. Am. A 14, 1460–1466 (1997). [CrossRef] | |
G. Tartarini and H. Renner, ‘Efficient Finite-Element Analysis of Tilted Open Anisotropic Optical Channel Waveguides,’ IEEE Microwave Guided Wave Lett. 9, 389–391 (1999). [CrossRef] | |
A. W. Snyder and J. D. Love, Optical Waveguide Theory (Chapman and Hall, London, 1983). | |
Ph. M. Morse and H. Feshbach, Methods of Theoretical Physics (McGraw-Hill, New York, 1953). | |
H. Abramowitz and I. A. Stegun, Handbook of mathematical functions (US Government Printing Office, Washington, D. C., 1964). | |
D. Johlen, H. Renner, A. Ewald, and E. Brinkmeyer : ‘Fiber Bragg grating Fabry-Perot interferometer for a precise measurement of the UV-induced index change,’ in Proc. ECOC’98 , Madrid, 1998, Vol. 1, pp. 393–394. | |
T. Erdogan and V. Mizrahi, ‘Characterization of UV-induced birefringence in photosensitive Ge-doped silica optical fibers,’ J. Opt. Soc. Am. B 11, 416–417 (1994). [CrossRef] | |
O. Duhem and M. Douay, ‘Effect of birefringence on long-period-grating coupling characteristics,’ Electron. Lett. , 36, 416–417 (2000). [CrossRef] | |
M. Schiano and G. Zaffiro, ‘Polarisation mode dispersion in chirped fibre gratings,’ in Proc. ECOC’98 , Madrid, 1998, Vol. 1, pp. 403–405. | |
F. Oullette, ‘Dispersion cancellation usingl inearly chirped Braggg ratingfil ters in optical waveguides,’ Opt. Lett. 12, 847–849 (1987). [CrossRef] | |
J. L. Philipsen, M. O. Berendt, P. Varming, V. C. Lauridsen, J. H. Povlsen, J. Hübner, M. Kristensen, and B. Palsdottir, ‘Polarisation control of DFB fibre laser usingU V-induced birefringent phase-shift,’ Electron. Lett. 34 678–679 (1998). [CrossRef] | |
E.-G. Neumann, Single-Mode Fibers (Springer-Verlag, Berlin, 1988). | |
H. Rosenfeldt, Ch. Knothe, R. Ulrich, E. Brinkmeyer, U. Feiste, C. Schubert, J. Berger, R. Ludwig, H. G. Weber, and A. Ehrhardt, ‘Automatic PMD Compensation at 40 Gbit/s and 80 Gbit/s Usinga 3-Dimensional DOP Evaluation for Feedback,’ Proc. Conf. Opt. Fiber Comm. (OFC), Anaheim, USA (Postdeadline Paper PD27), (2001). | |
K. O. Hill, B. Malo, K. Vineberg, F. Bilodeau, D. Johnson, and I. Skinner, ‘Efficient mode-conversion in telecommunication fiber using externally written gratings,’ Electron. Lett. 26 pp. 1270–1272 (1990). [CrossRef] | |
A. S. Kurkov, M. Douay, O. Duhem, B. Leleu, J. F. Henninot, J. F. Bayon, and L. Rivoallan, ’Long-period fibre gratings as a wavelength selective polarisation element,’ Electron. Lett. 33, 616–617 (1997). [CrossRef] | |
A. W. Snyder and J. D. Love, Optical Waveguide Theory (Chapman and Hall, London, 1983), Sect. 13–6. | |
A. W. Snyder and J. D. Love, Optical Waveguide Theory (Chapman and Hall, London, 1983), Sect. 17. | |
M. Parent, J. Bures, S. Lacroix, and J. Lapierre, ‘Proprits de polarisation des rflecteurs de Bragg induits par photosensibilit dans les fibres optiques monomodes,’ Appl. Opt. 24, 354–357 (1985). [CrossRef] [PubMed] | |
J. Albert, B. Malo, D. C. Johnson, F. Bilodeau, K. O. Hill, J. L. Brebner, and G. Kajrys, ‘Dichroism in the absorption spectrum of photobleached ion-implanted silica,’ Opt. Lett. 18, 1126–1128 (1993). [CrossRef] [PubMed] | |
T. Meyer, P.-A. Nicati, P. A. Robert, D. Varelas, H. G. Limberger, and R. P. Salathe, ‘Birefringence writing and erasing in ultra-low-birefringence fibers by polarized UV side-exposure: origin and applications,’ Proc. 11th international Conference on Optical Fiber Sensors (OFS’96), Sapporo, Japan, 1997, vol. 1, pp. 368–371. |
OCIS Codes
(060.0060) Fiber optics and optical communications : Fiber optics and optical communications
(060.2430) Fiber optics and optical communications : Fibers, single-mode
ToC Category:
Research Papers
History
Original Manuscript: September 27, 2001
Published: November 19, 2001
Citation
Hagen Renner, "Effective-index increase, form birefringence and transition losses in UV-side-illuminated photosensitive fibers," Opt. Express 9, 546-560 (2001)
http://www.opticsinfobase.org/oe/abstract.cfm?URI=oe-9-11-546
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References
- K. O. Hill, Y. Fujii, D. C. Johnson, and B. S. Kawasaki, "Photosensitivity in optical waveguides: Application to reflection filter fabrication," Appl. Phys. Lett. 32, 647-649 (1978). [CrossRef]
- G. Meltz, W. W. Morey, and W. H. Glenn, "Formation of Bragg gratings in optical fibers by transverse holographic method," Opt. Lett. 14, 823-825 (1989). [CrossRef] [PubMed]
- F. Bilodeau, K. O. Hill, B. Malo, D. Johnson, and I. Skinner, "Efficient narrow-band LP01 LP02 mode convertors fabricated in photosensitive fiber: Spectral response," Electron. Lett. 27, 682-684 (1991). [CrossRef]
- A. M. Vengsarkar, P. L. Lemaire, J. B. Judkins, V. Bathia, T. Erdogan, and J. E. Sipe, "Long-period fiber gratings as band rejection filters," J. Lightwave Technol. 14, 58-65 (1996). [CrossRef]
- V. Mizrahi and J. E. Sipe, "Optical properties of photosensitive fiber phase gratings," J. Lightwave Technol. 11, 1513-1517 (1993). [CrossRef]
- D. Johlen, H. Renner, P. Klose, E. Brinkmeyer, "UV-Writing of Two-Mode Sections into Single-Mode Fibres for Hosting Mode-Converting Bragg Gratings," IEEE Photon. Technol. Lett. 11, 1015-1017 (1999). [CrossRef]
- R. Kashyap, Fiber Bragg Gratings (Academic Press, San Diego, 1999).
- E. Brinkmeyer, D. Johlen, F. Knappe, and H. Renner, "Methods for experimental characterization of UV-written gratings and waveguides," OSA Trends in Optics and Photonics Vol. 33, Bragg Gratings, Photosensitivity, and Poling in Glass Waveguides, pp. 155-175 (2000).
- D. Inniss, Q. Zhong, A. M. Vengsarkar, W. A. Reed, S. G. Kosinski, and P. L. Lemaire, "Atomic force microscopy study of uv-induced anisotropy in hydrogen-loaded germanosilicate fibers," Appl. Phys. Lett. 65, 1528-1530 (1994). [CrossRef]
- A. M. Vengsarkar, Q. Zhong, D. Inniss, W. A. Reed, P. L. Lemaire, and S. G. Kosinski, "Birefringence reduction in side-written photoinduced fiber devices by a dual-exposure method," Opt. Lett. 19, 1260-1262 (1994). [CrossRef]
- C. De Barros, I. Riant, T. Lopez, and P. Sansonetti, "Tapered slanted Bragg grating for low insertion loss gain equalizing filter," OSA Technical Digest: Conference on Bragg Gratings, Photosensitivity and Poling in Glass Waveguides, Stresa, Italy, July 4-6 (paper JW1), (2001).
- H. Renner, D. Johlen, E. Brinkmeyer, "Modal field deformation and transition losses in UV side-written optical fibers," Appl. Opt. 39, 933-940 (2000). [CrossRef]
- D. Johlen, F. Knappe, H. Renner, and E. Brinkmeyer, "UV-Induced Absorption, Scattering and Transition Losses in UV Side-Written Fibers," Proc. Conf. Opt. Fiber Comm. (OFC), San Diego, CA, USA (paper ThD1), (1999).
- H. Renner, "Modes of UV-written planar waveguides," Opt. Lett. 23, 111-113 (1998). [CrossRef]
- S. Selleri und M. Zoboli, "Performance comparison of finite-element approaches for electromagnetic waveguides," J. Opt. Soc. Am. A 14, 1460-1466 (1997). [CrossRef]
- G. Tartarini und H. Renner, "Efficient Finite-Element Analysis of Tilted Open Anisotropic Optical Channel Waveguides," IEEE Microwave Guided Wave Lett. 9, 389-391 (1999). [CrossRef]
- A. W. Snyder and J. D. Love, Optical Waveguide Theory (Chapman and Hall, London, 1983).
- Ph. M. Morse and H. Feshbach, Methods of Theoretical Physics (McGraw-Hill, New York, 1953).
- Ge-doped single-mode fiber, OFTC Sydney, Australia.
- H. Abramowitz and I. A. Stegun, Handbook of mathematical functions (US Government Printing Office, Washington, D. C., 1964).
- D. Johlen, H. Renner, A. Ewald, and E. Brinkmeyer : "Fiber Bragg grating Fabry-Perot interferometer for a precise measurement of the UV-induced index change," in Proc. ECOC"98, Madrid, 1998, Vol. 1, pp. 393-394.
- T. Erdogan and V. Mizrahi, "Characterization of UV-induced birefringence in photosensitive Ge-doped silica optical fibers," J. Opt. Soc. Am. B 11, 416-417 (1994). [CrossRef]
- O. Duhem and M. Douay, "Effect of birefringence on long-period-grating coupling characteristics," Electron. Lett. 36, 416-417 (2000). [CrossRef]
- M. Schiano and G. Zaffiro, "Polarisation mode dispersion in chirped fibre gratings," in Proc. ECOC"98, Madrid, 1998, Vol. 1, pp. 403-405.
- F. Oullette, "Dispersion cancellation using linearly chirped Bragg grating filters in optical waveguides," Opt. Lett. 12, 847-849 (1987). [CrossRef]
- J. L. Philipsen, M. O. Berendt, P. Varming, V. C. Lauridsen, J. H. Povlsen, J. Hubner, M. Kristensen, and B. Palsdottir, "Polarisation control of DFB fibre laser using UV-induced birefringent phase-shift," Electron. Lett. 34 678-679 (1998). [CrossRef]
- E.-G. Neumann, Single-Mode Fibers (Springer-Verlag, Berlin, 1988).
- H. Rosenfeldt, Ch. Knothe, R. Ulrich, E. Brinkmeyer, U. Feiste, C. Schubert, J. Berger, R. Ludwig, H. G. Weber, A. Ehrhardt, "Automatic PMD Compensation at 40 Gbit/s and 80 Gbit/s Using a 3-Dimensional DOP Evaluation for Feedback," Proc. Conf. Opt. Fiber Comm. (Optical Society of America, Washington, D.C., 2001) Postdeadline Paper PD27.
- K. O. Hill, B. Malo, K. Vineberg, F. Bilodeau, D. Johnson, and I. Skinner, "Efficient mode-conversion in telecommunication fiber using externally written gratings," Electron. Lett. 26, 1270-1272 (1990). [CrossRef]
- A. S. Kurkov, M. Douay, O. Duhem, B. Leleu, J. F. Henninot, J. F. Bayon, and L. Rivoallan, "Long-period fibre gratings as a wavelength selective polarisation element," Electron. Lett. 33, 616-617 (1997). [CrossRef]
- A. W. Snyder and J. D. Love, Optical Waveguide Theory (Chapman and Hall, London, 1983), Sect. 13-6. 32.
- A. W. Snyder and J. D. Love, Optical Waveguide Theory (Chapman and Hall, London, 1983), Sect. 17.
- M. Parent, J. Bures, S. Lacroix, and J. Lapierre, "Propri�t�s de polarisation des r�flecteurs de Bragg induits par photosensibilit� dans les fibres optiques monomodes," Appl. Opt. 24, 354-357 (1985). [CrossRef] [PubMed]
- J. Albert, B. Malo, D. C. Johnson, F. Bilodeau, K. O. Hill, J. L. Brebner, and G. Kajrys, "Dichroism in the absorption spectrum of photobleached ion-implanted silica," Opt. Lett. 18, 1126-1128 (1993). [CrossRef] [PubMed]
- T. Meyer, P.-A. Nicati, P. A. Robert, D. Varelas, H. G. Limberger and R. P. Salathe, "Birefringence writing and erasing in ultra-low-birefringence fibers by polarized UV side-exposure: origin and applications," Proc. 11th international Conference on Optical Fiber Sensors (OFS"96), Sapporo, Japan, 1997, vol. 1, pp. 368-371.
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