Effect of coupling between fundamental and cladding modes on bending losses in photonic crystal fibers
Optics Express, Vol. 13, Issue 16, pp. 6015-6022 (2005)
http://dx.doi.org/10.1364/OPEX.13.006015
Acrobat PDF (372 KB)
Abstract
The paper presents a fully vectorial analysis of bending losses in photonic crystal fibers employing edge/nodal hybrid elements and perfectly matched layers boundary conditions. The oscillatory character of losses vs. both the wavelength and the bending radius has been demonstrated. The shown oscillations originate from the coupling between the fundamental mode guided in the core and the gallery of cladding modes arising due to light reflection from the boundary between solid and holey part of the cladding.
© 2005 Optical Society of America
1. Introduction
T. A. Birks, J. C. Knight, and P. St.J. Russell, “Endlessly single-mode photonic crystal fiber,” Opt. Lett. 22, 961–963 (1997). [CrossRef] [PubMed]
T. A. Birks, J. C. Knight, and P. St.J. Russell, “Endlessly single-mode photonic crystal fiber,” Opt. Lett. 22, 961–963 (1997). [CrossRef] [PubMed]
T. A. Birks, J. C. Knight, and P. St.J. Russell, “Endlessly single-mode photonic crystal fiber,” Opt. Lett. 22, 961–963 (1997). [CrossRef] [PubMed]
J. C. Baggett, T. M. Monro, K. Furusawa, V. Finazzi, and D.J. Richardson. “Understanding bending losses in holey optical fibers,” Opt. Commun. 227, 317–335 (2003). [CrossRef]
T. M. Monro, D. J. Richardson, N. G. R. Broderick, and P. J. Bennet, “Holey optical fibers an efficient modal model,” J. Lightwave Technol. 17, 1093–1102 (1999). [CrossRef]
T. M. Monro, D. J. Richardson, N. G. R. Broderick, and P. J. Bennet, “Holey optical fibers an efficient modal model,” J. Lightwave Technol. 17, 1093–1102 (1999). [CrossRef]
M. Koshiba and K. Saitoh, “Simple evaluation of confinement losses in holey fibers.” Opt. Commun. , article in press, (2005). [CrossRef]
D. Marcuse, “Influence of curvature on the losses of doubly clad fibers,” Appl. Opt. 21, 4208–4213 (1982). [CrossRef] [PubMed]
2. Calculation method
M. D. Nielsen, N. A. Mortensen, M. Albertsen, J. R. Folkenberg, A. Bjarklev, and D. Bonacinni “Predicting macrobending loss for large-mode area photonic crystal fibers,” Opt. Express 19, 1775–1779 (2004). [CrossRef]
M. Heiblum and J. H. Harris“Analysis of curved optical waveguides by conformal transformation,” IEE J. Quant. Electron. 11, 75–83 (1975). [CrossRef]
A. B. Sharma, A.-H. Al-Ani, and S. J. Halme “Constant-curvature loss in monomode fibers: an experimental investigation,” Appl. Opt. 23, 3297–3301 (1984). [CrossRef] [PubMed]
K. Nagano, S. Kawakami, and S. Nishida, “Change of the refractive index in an optical fiber due to external forces,” Appl. Opt. 17, 2080–2085 (1978). [CrossRef] [PubMed]
F. L. Teixeira and W. C. Chew, “General closed-form PML constitutive tensors to match arbitrary bianisotropic and dispersive linear media,” IEEE Microwave Guided Wave Lett. 8, 223–225 (1998). [CrossRef]
Y Tsuji and M. Koshiba, “Complex modal analysis of curved optical waveguides using a full-vectorial finite element method with perfectly matched layer boundary conditions,” Electromagnetics 24, 39–48 (2004). [CrossRef]
Y. Tsuchida, K. Saitoh, and M. Koshiba “Design and characterisation of single-mode holey fibers with low bending losses,” Opt. Express 13, 4770–4779 (2005). [CrossRef] [PubMed]
3. Results of calculations
T. A. Birks, J. C. Knight, and P. St.J. Russell, “Endlessly single-mode photonic crystal fiber,” Opt. Lett. 22, 961–963 (1997). [CrossRef] [PubMed]
M. D. Nielsen, N. A. Mortensen, M. Albertsen, J. R. Folkenberg, A. Bjarklev, and D. Bonacinni “Predicting macrobending loss for large-mode area photonic crystal fibers,” Opt. Express 19, 1775–1779 (2004). [CrossRef]
M. D. Nielsen, N. A. Mortensen, M. Albertsen, J. R. Folkenberg, A. Bjarklev, and D. Bonacinni “Predicting macrobending loss for large-mode area photonic crystal fibers,” Opt. Express 19, 1775–1779 (2004). [CrossRef]
M. D. Nielsen, N. A. Mortensen, M. Albertsen, J. R. Folkenberg, A. Bjarklev, and D. Bonacinni “Predicting macrobending loss for large-mode area photonic crystal fibers,” Opt. Express 19, 1775–1779 (2004). [CrossRef]
4. Conclusions
D. Marcuse, “Influence of curvature on the losses of doubly clad fibers,” Appl. Opt. 21, 4208–4213 (1982). [CrossRef] [PubMed]
M.D. Nielsen1, J.R. Folkenberg, N.A. Mortensen, and A. Bjarklev, “Bandwidth comparison of photonic crystal fibers and conventional single-mode fibers,” Opt. Express 12, 430–435 (2004). [CrossRef]
Acknowledgments
References and links
T. A. Birks, J. C. Knight, and P. St.J. Russell, “Endlessly single-mode photonic crystal fiber,” Opt. Lett. 22, 961–963 (1997). [CrossRef] [PubMed] | |
M. A. van Eijkelenborg, J. Canning, T. Ryan, and K. Lyytikainen, “Bending-induced colouring in a photonic crystal fibre,” Opt. Express 7, 88–94 (2000). [CrossRef] [PubMed] | |
T. Sørensen, J. Broeng, A. Bjarklev, E. Knudsen, and S. E. B. Libori, “Macro-bending loss properties of photonic crystal fibre,” Electron. Lett. 37, 287–289 (2001). [CrossRef] | |
M.D. Nielsen1, J.R. Folkenberg, N.A. Mortensen, and A. Bjarklev, “Bandwidth comparison of photonic crystal fibers and conventional single-mode fibers,” Opt. Express 12, 430–435 (2004). [CrossRef] | |
M. D. Nielsen, N. A. Mortensen, M. Albertsen, J. R. Folkenberg, A. Bjarklev, and D. Bonacinni “Predicting macrobending loss for large-mode area photonic crystal fibers,” Opt. Express 19, 1775–1779 (2004). [CrossRef] | |
J. C. Baggett, T. M. Monro, K. Furusawa, V. Finazzi, and D.J. Richardson. “Understanding bending losses in holey optical fibers,” Opt. Commun. 227, 317–335 (2003). [CrossRef] | |
T. M. Monro, D. J. Richardson, N. G. R. Broderick, and P. J. Bennet, “Holey optical fibers an efficient modal model,” J. Lightwave Technol. 17, 1093–1102 (1999). [CrossRef] | |
M. Koshiba and K. Saitoh, “Simple evaluation of confinement losses in holey fibers.” Opt. Commun. , article in press, (2005). [CrossRef] | |
D. Marcuse, “Influence of curvature on the losses of doubly clad fibers,” Appl. Opt. 21, 4208–4213 (1982). [CrossRef] [PubMed] | |
J. H. Harris and P. F. Castle “Bend loss measurements on high numerical aperture single-mode fibers as a function of wavelength and bend radius,” J. Lightwave Technol. 4, 34–40 (1986). [CrossRef] | |
H. Renner, “Bending losses of coated single-mode fibers: a simple approach,” J. Lightwave Technol. 10, 544–551 (1992). [CrossRef] | |
L Faustini and G. Martini, “Bend loss in single-mode fibers,” J. Lightwave Technol. 15, 671–679 (1997). [CrossRef] | |
Q. Wang, G. Farrell, and T. Freir, “Theoretical and experimental investigations of macro-bend losses for standard single mode fibers,” Opt. Express 13, 4476–4484 (2005). [CrossRef] [PubMed] | |
M. Heiblum and J. H. Harris“Analysis of curved optical waveguides by conformal transformation,” IEE J. Quant. Electron. 11, 75–83 (1975). [CrossRef] | |
A. B. Sharma, A.-H. Al-Ani, and S. J. Halme “Constant-curvature loss in monomode fibers: an experimental investigation,” Appl. Opt. 23, 3297–3301 (1984). [CrossRef] [PubMed] | |
K. Nagano, S. Kawakami, and S. Nishida, “Change of the refractive index in an optical fiber due to external forces,” Appl. Opt. 17, 2080–2085 (1978). [CrossRef] [PubMed] | |
F. L. Teixeira and W. C. Chew, “General closed-form PML constitutive tensors to match arbitrary bianisotropic and dispersive linear media,” IEEE Microwave Guided Wave Lett. 8, 223–225 (1998). [CrossRef] | |
Y Tsuji and M. Koshiba, “Complex modal analysis of curved optical waveguides using a full-vectorial finite element method with perfectly matched layer boundary conditions,” Electromagnetics 24, 39–48 (2004). [CrossRef] | |
Y. Tsuchida, K. Saitoh, and M. Koshiba “Design and characterisation of single-mode holey fibers with low bending losses,” Opt. Express 13, 4770–4779 (2005). [CrossRef] [PubMed] |
OCIS Codes
(060.0060) Fiber optics and optical communications : Fiber optics and optical communications
(060.2330) Fiber optics and optical communications : Fiber optics communications
(060.2400) Fiber optics and optical communications : Fiber properties
ToC Category:
Research Papers
History
Original Manuscript: June 21, 2005
Revised Manuscript: July 22, 2005
Published: August 8, 2005
Citation
Jacek Olszewski, Marcin Szpulak, and Waclaw Urba�?czyk, "Effect of coupling between fundamental and cladding modes on bending losses in photonic crystal fibers," Opt. Express 13, 6015-6022 (2005)
http://www.opticsinfobase.org/oe/abstract.cfm?URI=oe-13-16-6015
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References
- T. A. Birks, J. C. Knight, P. St. J. Russell, �??Endlessly single-mode photonic crystal fiber,�?? Opt. Lett. 22, 961-963 (1997). [CrossRef] [PubMed]
- M. A. van Eijkelenborg, J. Canning, T. Ryan and K. Lyytikainen, �??Bending-induced colouring in a photonic crystal fibre,�?? Opt. Express 7, 88-94 (2000). [CrossRef] [PubMed]
- T. Sørensen, J. Broeng, A. Bjarklev, E. Knudsen, and S. E. B. Libori, �??Macro-bending loss properties of photonic crystal fibre,�?? Electron. Lett. 37, 287�??289 (2001). [CrossRef]
- M.D. Nielsen1, J.R. Folkenberg, N.A. Mortensen, and A. Bjarklev, �??Bandwidth comparison of photonic crystal fibers and conventional single-mode fibers,�?? Opt. Express 12, 430-435 (2004). [CrossRef]
- M. D. Nielsen, N. A. Mortensen, M. Albertsen, J. R. Folkenberg, A. Bjarklev, and D. Bonacinni �??Predicting macrobending loss for large-mode area photonic crystal fibers,�?? Opt. Express 19, 1775-1779 (2004). [CrossRef]
- J. C. Baggett , T. M. Monro, K. Furusawa,V. Finazzi, D.J. Richardson. �??Understanding bending losses in holey optical fibers,�?? Opt. Commun. 227, 317�??335 (2003). [CrossRef]
- T. M. Monro, D. J. Richardson, N. G. R. Broderick, P. J. Bennet, �??Holey optical fibers an efficient modal model,�?? J. Lightwave Technol. 17, 1093-1102 (1999). [CrossRef]
- M. Koshiba, K. Saitoh, �??Simple evaluation of confinement losses in holey fibers�?? Opt. Commun., article in press, (2005). [CrossRef]
- D. Marcuse, �??Influence of curvature on the losses of doubly clad fibers,�?? Appl. Opt. 21, 4208-4213 (1982). [CrossRef] [PubMed]
- J. H. Harris and P. F. Castle �??Bend loss measurements on high numerical aperture single-mode fibers as a function of wavelength and bend radius,�?? J. Lightwave Technol. 4, 34-40 (1986). [CrossRef]
- H. Renner, �??Bending losses of coated single-mode fibers: a simple approach,�?? J. Lightwave Technol. 10, 544-551 (1992). [CrossRef]
- L. Faustini, and G. Martini, �??Bend loss in single-mode fibers ,�?? J. Lightwave Technol. 15, 671-679 (1997). [CrossRef]
- Q. Wang, G. Farrell, T. Freir, �??Theoretical and experimental investigations of macro-bend losses for standard single mode fibers,�?? Opt. Express 13, 4476-4484 (2005). [CrossRef] [PubMed]
- M. Heiblum, J. H. Harris �??Analysis of curved optical waveguides by conformal transformation,�?? IEE J. Quant. Electron. 11, 75-83 (1975). [CrossRef]
- A. B. Sharma, A.-H. Al-Ani, and S. J. Halme, �??Constant-curvature loss in monomode fibers: an experimental investigation,�?? Appl. Opt. 23, 3297-3301 (1984). [CrossRef] [PubMed]
- K. Nagano, S. Kawakami, and S. Nishida, �??Change of the refractive index in an optical fiber due to external forces,�?? Appl. Opt. 17, 2080-2085 (1978). [CrossRef] [PubMed]
- F. L. Teixeira, W. C. Chew, �??General closed-form PML constitutive tensors to match arbitrary bianisotropic and dispersive linear media,�?? IEEE Microwave Guided Wave Lett. 8, 223-225 (1998). [CrossRef]
- Y. Tsuji, M. Koshiba, �??Complex modal analysis of curved optical waveguides using a full-vectorial finite element method with perfectly matched layer boundary conditions,�?? Electromagnetics 24, 39-48 (2004). [CrossRef]
- Y. Tsuchida, K. Saitoh, and M. Koshiba �??Design and characterisation of single-mode holey fibers with low bending losses,�?? Opt. Express 13, 4770-4779 (2005). [CrossRef] [PubMed]
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