Highly birefringent elliptical-hole rectangular-lattice photonic crystal fibers with modified air holes near the core
Optics Express, Vol. 15, Issue 14, pp. 8892-8897 (2007)
http://dx.doi.org/10.1364/OE.15.008892
Acrobat PDF (236 KB)
Abstract
In this work, modal birefringence and polarization-dependent leakage loss for the fundamental mode in elliptical-hole rectangular-lattice photonic crystal fibers (EH-RL-PCFs) with modified air holes near the core are investigated by using a full-vector, finite-difference method in the frequency domain. Numerical results show that by introducing modified air holes, a heightened modal birefringence of the order of 10-2 has been obtained within the wavelengths ranging from 1.0 to 1.6 μm in the proposed PCFs, with a lattice length of 2 μm and with a large lattice length of 3 μm at 1.55 μm.
© 2007 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]
M. Y. Chen, R. J. Yu, and A. P. Zhao, “Highly birefringent rectangular lattice photonic crystal fibres,” J. Opt. A 6, 997–1000 (2004). [CrossRef]
J. Ju, W. Jin, and M. S. Demokan, “Design of single-polarization single-mode photonic crystal fiber at 1.30 and 1.55 μm,” J. Lightwave Technol. 24, 825–830 (2006). [CrossRef]
M. J. Steel and R. M. Osgood Jr., “Elliptical-hole photonic crystal fibers,” Opt. Lett. 26, 229–231 (2001). [CrossRef]
D. C. Zografopoulos, E. E. Kriezis, and T. D. Tsiboukis, “Tunable highly birefringent bandgap-guiding liquid-crystal microstructured fibers,” J. Lightwave Technol. 24, 3427–3432 (2006). [CrossRef]
M. Y. Chen, R. J. Yu, and A. P. Zhao, “Highly birefringent rectangular lattice photonic crystal fibres,” J. Opt. A 6, 997–1000 (2004). [CrossRef]
Y. Yue, G. Y. Kai, Z. Wang, T. T. Sun, L. Jin, Y. F. Lu, C. S. Zhang, J. G. Liu, Y. Li, Y. G. Liu, S. Z. Yuan, and X. Y. Dong, “Highly birefringent elliptical-hole photonic crystal fiber with squeezed hexagonal lattice,” Opt. Lett. 32, 469–471 (2007). [CrossRef] [PubMed]
X. Chen, M.-J. Li, N. Venkataraman, M. T. Gallagher, W. A. Wood, A. M. Crowley, J. P. Carberry, L. A. Zenteno, and K. W. Koch, “Highly birefringent hollow-core photonic bandgap fiber,” Opt. Express 12, 3888–3893 (2004), http://www.opticsexpress.org/abstract.cfm?URI=OPEX-12-16-3888. [CrossRef] [PubMed]
M. Y. Chen and R. J. Yu, “Polarization properties of elliptical-hole rectangular lattice photonic crystal fibres,” J. Opt. A 6, 512–515 (2004). [CrossRef]
Y. C. Liu and Y. Lai, “Optical birefringence and polarization dependent loss of square- and rectangular-lattice holey fibers with elliptical air holes: numerical analysis,” Opt. Express 13, 225–235 (2004),http://www.opticsexpress.org/abstract.cfm?id=82264. [CrossRef]
Y. Yue, G. Y. Kai, Z. Wang, T. T. Sun, L. Jin, Y. F. Lu, C. S. Zhang, J. G. Liu, Y. Li, Y. G. Liu, S. Z. Yuan, and X. Y. Dong, “Highly birefringent elliptical-hole photonic crystal fiber with squeezed hexagonal lattice,” Opt. Lett. 32, 469–471 (2007). [CrossRef] [PubMed]
Y. Yue, G. Y. Kai, Z. Wang, T. T. Sun, L. Jin, Y. F. Lu, C. S. Zhang, J. G. Liu, Y. Li, Y. G. Liu, and S. Z. Yuan, “Highly birefringent elliptical-hole photonic crystal fiber with two big circular air holes adjacent to the core,” IEEE Photon. Technol. Lett. 18, 2638–2640 (2006). [CrossRef]
2. Birefringence and leakage loss in EH-RL-PCFs with modified air holes
S. Guo, F. Wu, S. Albin, H. Tai, and R. Rogowski, “Loss and dispersion analysis of microstructured fibers by finite-difference method,” Opt. Express 12, 3341–3352 (2004), http://www.opticsexpress.org/abstract.cfm?id=80619. [CrossRef] [PubMed]
Y. C. Liu and Y. Lai, “Optical birefringence and polarization dependent loss of square- and rectangular-lattice holey fibers with elliptical air holes: numerical analysis,” Opt. Express 13, 225–235 (2004),http://www.opticsexpress.org/abstract.cfm?id=82264. [CrossRef]
M. Y. Chen and R. J. Yu, “Polarization properties of elliptical-hole rectangular lattice photonic crystal fibres,” J. Opt. A 6, 512–515 (2004). [CrossRef]
Y. C. Liu and Y. Lai, “Optical birefringence and polarization dependent loss of square- and rectangular-lattice holey fibers with elliptical air holes: numerical analysis,” Opt. Express 13, 225–235 (2004),http://www.opticsexpress.org/abstract.cfm?id=82264. [CrossRef]
M. Y. Chen and R. J. Yu, “Polarization properties of elliptical-hole rectangular lattice photonic crystal fibres,” J. Opt. A 6, 512–515 (2004). [CrossRef]
Y. C. Liu and Y. Lai, “Optical birefringence and polarization dependent loss of square- and rectangular-lattice holey fibers with elliptical air holes: numerical analysis,” Opt. Express 13, 225–235 (2004),http://www.opticsexpress.org/abstract.cfm?id=82264. [CrossRef]
Y. Yue, G. Y. Kai, Z. Wang, T. T. Sun, L. Jin, Y. F. Lu, C. S. Zhang, J. G. Liu, Y. Li, Y. G. Liu, S. Z. Yuan, and X. Y. Dong, “Highly birefringent elliptical-hole photonic crystal fiber with squeezed hexagonal lattice,” Opt. Lett. 32, 469–471 (2007). [CrossRef] [PubMed]
Y. C. Liu and Y. Lai, “Optical birefringence and polarization dependent loss of square- and rectangular-lattice holey fibers with elliptical air holes: numerical analysis,” Opt. Express 13, 225–235 (2004),http://www.opticsexpress.org/abstract.cfm?id=82264. [CrossRef]
J. M. Fini, “Bend-resistant design of conventional and microstructure fibers with very large mode area,” Opt. Express 14, 69–81 (2006), http://www.opticsinfobase.org/abstract.cfm?URI=oe-14-1-69. [CrossRef] [PubMed]
N. A. Issa, M. A. van Eijkelenborg, M. Fellew, F. Cox, G. Henry, and M. C. J. Large, “Fabrication and study of microstructured optical fibers with elliptical holes,” Opt. Lett. 29, 1336–1338 (2004). [CrossRef] [PubMed]
M. Y. Chen, R. J. Yu, and A. P. Zhao, “Highly birefringent rectangular lattice photonic crystal fibres,” J. Opt. A 6, 997–1000 (2004). [CrossRef]
3. Conclusion
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] | |
R. F. Cregan, B. J. Mangan, J. C. Knight, T. A. Birks, P. St. J. Russell, P. J. Roberts, and D. C. Allan, “Single-mode photonic bandgap guidance of light in air,” Science 285, 1537–;1539 (1999). [CrossRef] [PubMed] | |
J. Monsoriu, E. Silvestre, A. Ferrando, P. Andrés, and J. Miret, “High-index-core Bragg fibers: dispersion properties,” Opt. Express 11, 1400–1405 (2003), http://www.opticsexpress.org/abstract.cfm?id=72647. [CrossRef] [PubMed] | |
J. Xu, J. Song, C Li, and K. Ueda “Cylindrically symmetrical hollow fiber,” Opt. Commun. 182, 343–348 (2000). [CrossRef] | |
M. Y. Chen, R. J. Yu, and A. P. Zhao, “Highly birefringent rectangular lattice photonic crystal fibres,” J. Opt. A 6, 997–1000 (2004). [CrossRef] | |
J. Ju, W. Jin, and M. S. Demokan, “Design of single-polarization single-mode photonic crystal fiber at 1.30 and 1.55 μm,” J. Lightwave Technol. 24, 825–830 (2006). [CrossRef] | |
M. J. Steel and R. M. Osgood Jr., “Elliptical-hole photonic crystal fibers,” Opt. Lett. 26, 229–231 (2001). [CrossRef] | |
D. C. Zografopoulos, E. E. Kriezis, and T. D. Tsiboukis, “Tunable highly birefringent bandgap-guiding liquid-crystal microstructured fibers,” J. Lightwave Technol. 24, 3427–3432 (2006). [CrossRef] | |
Y. Yue, G. Y. Kai, Z. Wang, T. T. Sun, L. Jin, Y. F. Lu, C. S. Zhang, J. G. Liu, Y. Li, Y. G. Liu, S. Z. Yuan, and X. Y. Dong, “Highly birefringent elliptical-hole photonic crystal fiber with squeezed hexagonal lattice,” Opt. Lett. 32, 469–471 (2007). [CrossRef] [PubMed] | |
X. Chen, M.-J. Li, N. Venkataraman, M. T. Gallagher, W. A. Wood, A. M. Crowley, J. P. Carberry, L. A. Zenteno, and K. W. Koch, “Highly birefringent hollow-core photonic bandgap fiber,” Opt. Express 12, 3888–3893 (2004), http://www.opticsexpress.org/abstract.cfm?URI=OPEX-12-16-3888. [CrossRef] [PubMed] | |
M. Y. Chen and R. J. Yu, “Polarization properties of elliptical-hole rectangular lattice photonic crystal fibres,” J. Opt. A 6, 512–515 (2004). [CrossRef] | |
Y. C. Liu and Y. Lai, “Optical birefringence and polarization dependent loss of square- and rectangular-lattice holey fibers with elliptical air holes: numerical analysis,” Opt. Express 13, 225–235 (2004),http://www.opticsexpress.org/abstract.cfm?id=82264. [CrossRef] | |
Y. Yue, G. Y. Kai, Z. Wang, T. T. Sun, L. Jin, Y. F. Lu, C. S. Zhang, J. G. Liu, Y. Li, Y. G. Liu, and S. Z. Yuan, “Highly birefringent elliptical-hole photonic crystal fiber with two big circular air holes adjacent to the core,” IEEE Photon. Technol. Lett. 18, 2638–2640 (2006). [CrossRef] | |
S. Guo, F. Wu, S. Albin, H. Tai, and R. Rogowski, “Loss and dispersion analysis of microstructured fibers by finite-difference method,” Opt. Express 12, 3341–3352 (2004), http://www.opticsexpress.org/abstract.cfm?id=80619. [CrossRef] [PubMed] | |
G. P. Agrawal, Nonlinear FiberOptics , 2nd ed. (Academic, 1995). | |
J. M. Fini, “Bend-resistant design of conventional and microstructure fibers with very large mode area,” Opt. Express 14, 69–81 (2006), http://www.opticsinfobase.org/abstract.cfm?URI=oe-14-1-69. [CrossRef] [PubMed] | |
N. A. Issa, M. A. van Eijkelenborg, M. Fellew, F. Cox, G. Henry, and M. C. J. Large, “Fabrication and study of microstructured optical fibers with elliptical holes,” Opt. Lett. 29, 1336–1338 (2004). [CrossRef] [PubMed] |
OCIS Codes
(060.2270) Fiber optics and optical communications : Fiber characterization
(060.2280) Fiber optics and optical communications : Fiber design and fabrication
(060.2420) Fiber optics and optical communications : Fibers, polarization-maintaining
ToC Category:
Photonic Crystal Fibers
History
Original Manuscript: May 7, 2007
Revised Manuscript: June 7, 2007
Manuscript Accepted: June 8, 2007
Published: July 3, 2007
Citation
Liang Wang and Dongxiao Yang, "Highly birefringent elliptical-hole rectangular-lattice
photonic crystal fibers with modified air holes near the core," Opt. Express 15, 8892-8897 (2007)
http://www.opticsinfobase.org/oe/abstract.cfm?URI=oe-15-14-8892
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References
- 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]
- R. F. Cregan, B. J. Mangan, J. C. Knight, T. A. Birks, P. St. J. Russell, P. J. Roberts, and D. C. Allan, "Single-mode photonic bandgap guidance of light in air," Science 285, 1537-1539 (1999). [CrossRef] [PubMed]
- J. Monsoriu, E. Silvestre, A. Ferrando, P. Andrés, and J. Miret, "High-index-core Bragg fibers: dispersion properties," Opt. Express 11, 1400-1405 (2003). [CrossRef] [PubMed]
- J. Xu, J. Song, C Li, and K. Ueda "Cylindrically symmetrical hollow fiber," Opt. Commun. 182, 343-348 (2000). [CrossRef]
- M. Y. Chen, R. J. Yu, and A. P. Zhao, "Highly birefringent rectangular lattice photonic crystal fibres," J. Opt. A: Pure Appl. Opt. 6, 997-1000 (2004). [CrossRef]
- J. Ju, W. Jin, and M. S. Demokan, "Design of single-polarization single-mode photonic crystal fiber at 1.30 and 1.55 μm," J. Lightwave Technol. 24, 825-830 (2006). [CrossRef]
- M. J. Steel and R. M. Osgood Jr., "Elliptical-hole photonic crystal fibers," Opt. Lett. 26, 229-231 (2001). [CrossRef]
- D. C. Zografopoulos, E. E. Kriezis, and T. D. Tsiboukis, "Tunable highly birefringent bandgap-guiding liquid-crystal microstructured fibers," J. Lightwave Technol. 24, 3427-3432 (2006). [CrossRef]
- Y. Yue, G. Y. Kai, Z. Wang, T. T. Sun, L. Jin, Y. F. Lu, C. S. Zhang, J. G. Liu, Y. Li, Y. G. Liu, S. Z. Yuan, and X. Y. Dong, "Highly birefringent elliptical-hole photonic crystal fiber with squeezed hexagonal lattice," Opt. Lett. 32, 469-471 (2007). [CrossRef] [PubMed]
- X. Chen, M.-J. Li, N. Venkataraman, M. T. Gallagher, W. A. Wood, A. M. Crowley, J. P. Carberry, L. A. Zenteno, and K. W. Koch, "Highly birefringent hollow-core photonic bandgap fiber," Opt. Express 12, 3888-3893 (2004). [CrossRef] [PubMed]
- M. Y. Chen and R. J. Yu, "Polarization properties of elliptical-hole rectangular lattice photonic crystal fibres," J. Opt. A: Pure Appl. Opt. 6, 512-515 (2004). [CrossRef]
- Y. C. Liu and Y. Lai, "Optical birefringence and polarization dependent loss of square- and rectangular-lattice holey fibers with elliptical air holes: numerical analysis," Opt. Express 13, 225-235 (2004). [CrossRef]
- Y. Yue, G. Y. Kai, Z. Wang, T. T. Sun, L. Jin, Y. F. Lu, C. S. Zhang, J. G. Liu, Y. Li, Y. G. Liu, and S. Z. Yuan, "Highly birefringent elliptical-hole photonic crystal fiber with two big circular air holes adjacent to the core," IEEE Photon. Technol. Lett. 18, 2638-2640 (2006). [CrossRef]
- S. Guo, F. Wu, S. Albin, H. Tai, and R. Rogowski, "Loss and dispersion analysis of microstructured fibers by finite-difference method," Opt. Express 12, 3341-3352 (2004). [CrossRef] [PubMed]
- G. P. Agrawal, Nonlinear FiberOptics, 2nd ed., (Academic, 1995).
- J. M. Fini, "Bend-resistant design of conventional and microstructure fibers with very large mode area," Opt. Express 14, 69-81 (2006). [CrossRef] [PubMed]
- N. A. Issa, M. A. van Eijkelenborg, M. Fellew, F. Cox, G. Henry, and M. C. J. Large, "Fabrication and study of microstructured optical fibers with elliptical holes," Opt. Lett. 29, 1336-1338 (2004). [CrossRef] [PubMed]
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