Robust photonic band gaps for hollow core guidance in PCF made from high index glass
Optics Express, Vol. 11, Issue 22, pp. 2854-2861 (2003)
http://dx.doi.org/10.1364/OE.11.002854
Acrobat PDF (4064 KB)
Abstract
We report a new type of photonic bandgap that becomes substantial at remarkably low air-filling fractions (~60%) in triangular-lattice photonic crystal fibres (PCF) made from high index glass (n≳2.0). The ratio of inter-hole spacing to wavelength makes these new structures ideal for the experimental realisation of hollow-core PCF in the mid/far-infrared, where suitable glasses (e.g., tellurites and chalcogenides) tend to have high refractive indices.
© 2003 Optical Society of America
1. Introduction
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 band gap guidance of light in air,” Science 285, 1537–1539 (1999). [CrossRef] [PubMed]
J. S. Wang, E. M. Vogel, and E. Snitzer, “Tellurite glass: a new candidate for fiber devices,” Opt. Mat. 3, 187–203 (1994). [CrossRef]
J. S. Wang, E. M. Vogel, and E. Snitzer, “Tellurite glass: a new candidate for fiber devices,” Opt. Mat. 3, 187–203 (1994). [CrossRef]
2. Method
J.C. Knight, J. Arriaga, T.A. Birks, A. Ortigosa-Blanch, W.J. Wadsworth, and P.St.J. Russell, “Anomalous dispersion in photonic crystal fiber,” IEEE Photon. Tech. Lett. 7, 807–809 (2000). [CrossRef]
S.G. Johnson and J.D Joannopoulos, “Block-iterative frequency-domain methods for Maxwell’s equations in a planewave basis,” Opt. Express 8, 173–190 (2001). http://www.opticsexpress.org/abstract.cfm?URI=OPEX-8-3-173 [CrossRef] [PubMed]
J.C. Knight, J. Arriaga, T.A. Birks, A. Ortigosa-Blanch, W.J. Wadsworth, and P.St.J. Russell, “Anomalous dispersion in photonic crystal fiber,” IEEE Photon. Tech. Lett. 7, 807–809 (2000). [CrossRef]
D.C. Sorensen, “Numerical methods for large eigenvalue problems,” Acta Numerica 11, 519–584 (2002). [CrossRef]
Y. Saad and M.H. Schultz, “GMRES: A generalised minimal residual algorithm for solving nonsymmetric linear systems,” SIAM J. Sci. Statist. Comput. 7, 856–869 (1986). [CrossRef]
N.A. Nicorovici and R.C. McPhedran, “Lattice sums for off-axis electromagnetic scattering by gratings,” Phys. Rev. E 50, 3143–3160 (1994). [CrossRef]
3. Results and interpretation
3.1. Evolution of the DOS with respect to glass-index and air-filling-fraction
C.M. Smith, N. Venkataraman, M.T. Gallagher, D. Müller, J. A. West, N. F. Borrelli, D. C. Allan, and K. W. Koch, “Low-loss hollow-core silica/air photonic bandgap fibre,” Nature 424, 657–659 (2003). [CrossRef] [PubMed]
P.J. Roberts, T.A. Birks, P.St.J. Russell, T.J. Shepherd, and D.M. Atkin, “Two-dimensional photonic band-gap structures as quasi-metals,” Opt. Lett. 21, 507–509 (1996). [CrossRef] [PubMed]
3.2. Demonstration of the robustness of the new type-II air-line gap
3.3. Practical fibre parameters for type-II hollow-core guidance
4. Conclusion
V.V. Ravi Kanth Kumar, A.K. George, W.H. Reeves, J.C. Knight, P.St.J. Russell, F.G. Omenetto, and A.J. Taylor, “Extruded soft glass photonic crystal fiber for ultrabroad supercontinuum generation,” Opt.Express 10, 1520–1525 (2002). http://www.opticsexpress.org/abstract.cfm?URI=OPEX-10-25-1520 [CrossRef] [PubMed]
V.V. Ravi Kanth Kumar, A.K. George, J.C. Knight, and P.St.J. Russell, “Tellurite photonic crystal fibre,” Opt. Express 10, 2641–2645 (2003). http://www.opticsexpress.org/abstract.cfm?URI=OPEX-11-20-2641 [CrossRef]
Acknowledgments
References and links
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 band gap guidance of light in air,” Science 285, 1537–1539 (1999). [CrossRef] [PubMed] | |
J. S. Wang, E. M. Vogel, and E. Snitzer, “Tellurite glass: a new candidate for fiber devices,” Opt. Mat. 3, 187–203 (1994). [CrossRef] | |
H. Kogelnik, “Theory of Optical Waveguides,” in Guided-Wave Optoelectronics, T. Tamir, ed. (Springer-Verlag, 1988). | |
J.C. Knight, J. Arriaga, T.A. Birks, A. Ortigosa-Blanch, W.J. Wadsworth, and P.St.J. Russell, “Anomalous dispersion in photonic crystal fiber,” IEEE Photon. Tech. Lett. 7, 807–809 (2000). [CrossRef] | |
J.D. Joannopoulos, R.D. Meade, and J.N. Winn, Photonic Crystals: Molding the Flow of Light (Princeton University Press, Princeton, N.J., 1995). | |
S.G. Johnson and J.D Joannopoulos, “Block-iterative frequency-domain methods for Maxwell’s equations in a planewave basis,” Opt. Express 8, 173–190 (2001). http://www.opticsexpress.org/abstract.cfm?URI=OPEX-8-3-173 [CrossRef] [PubMed] | |
D.C. Sorensen, “Numerical methods for large eigenvalue problems,” Acta Numerica 11, 519–584 (2002). [CrossRef] | |
Y. Saad and M.H. Schultz, “GMRES: A generalised minimal residual algorithm for solving nonsymmetric linear systems,” SIAM J. Sci. Statist. Comput. 7, 856–869 (1986). [CrossRef] | |
N.A. Nicorovici and R.C. McPhedran, “Lattice sums for off-axis electromagnetic scattering by gratings,” Phys. Rev. E 50, 3143–3160 (1994). [CrossRef] | |
C.M. Smith, N. Venkataraman, M.T. Gallagher, D. Müller, J. A. West, N. F. Borrelli, D. C. Allan, and K. W. Koch, “Low-loss hollow-core silica/air photonic bandgap fibre,” Nature 424, 657–659 (2003). [CrossRef] [PubMed] | |
P.J. Roberts, T.A. Birks, P.St.J. Russell, T.J. Shepherd, and D.M. Atkin, “Two-dimensional photonic band-gap structures as quasi-metals,” Opt. Lett. 21, 507–509 (1996). [CrossRef] [PubMed] | |
V.V. Ravi Kanth Kumar, A.K. George, W.H. Reeves, J.C. Knight, P.St.J. Russell, F.G. Omenetto, and A.J. Taylor, “Extruded soft glass photonic crystal fiber for ultrabroad supercontinuum generation,” Opt.Express 10, 1520–1525 (2002). http://www.opticsexpress.org/abstract.cfm?URI=OPEX-10-25-1520 [CrossRef] [PubMed] | |
V.V. Ravi Kanth Kumar, A.K. George, J.C. Knight, and P.St.J. Russell, “Tellurite photonic crystal fibre,” Opt. Express 10, 2641–2645 (2003). http://www.opticsexpress.org/abstract.cfm?URI=OPEX-11-20-2641 [CrossRef] |
OCIS Codes
(060.2280) Fiber optics and optical communications : Fiber design and fabrication
(060.2390) Fiber optics and optical communications : Fiber optics, infrared
ToC Category:
Research Papers
History
Original Manuscript: September 23, 2003
Revised Manuscript: October 20, 2003
Published: November 3, 2003
Citation
J. Pottage, David Bird, T. Hedley, J. Knight, T. Birks, P. Russell, and P. Roberts, "Robust photonic band gaps for hollow core guidance in PCF made from high index glass," Opt. Express 11, 2854-2861 (2003)
http://www.opticsinfobase.org/oe/abstract.cfm?URI=oe-11-22-2854
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References
- R.F. Cregan, B.J. Mangan, J.C. Knight, T.A. Birks, P.St.J. Russell, P.J. Roberts and D.C. Allan, �??Singlemode photonic band gap guidance of light in air,�?? Science 285, 1537-1539 (1999). [CrossRef] [PubMed]
- J. S. Wang, E. M. Vogel and E. Snitzer, �??Tellurite glass: a new candidate for fiber devices,�?? Opt. Mat. 3, 187-203 (1994). [CrossRef]
- H. Kogelnik, �??Theory of Optical Waveguides,�?? in Guided-Wave Optoelectronics, T. Tamir, ed. (Springer-Verlag, 1988).
- J.C. Knight, J. Arriaga, T.A. Birks, A. Ortigosa-Blanch, W.J. Wadsworth and P.St.J. Russell, �??Anomalous dispersion in photonic crystal fiber,�?? IEEE Photon. Tech. Lett. 7, 807-809 (2000). [CrossRef]
- J.D. Joannopoulos, R.D. Meade, and J.N. Winn, Photonic Crystals: Molding the Flow of Light (Princeton University Press, Princeton, N.J., 1995).
- S.G. Johnson and J.D Joannopoulos, �??Block-iterative frequency-domain methods for Maxwell�??s equations in a planewave basis,�?? Opt. Express 8, 173-190 (2001). <a href="http://www.opticsexpress.org/abstract.cfm?URI=OPEX-8-3-173">http://www.opticsexpress.org/abstract.cfm?URI=OPEX-8-3-173</a> [CrossRef] [PubMed]
- T.D. Hedley & D.M. Bird, to be published
- D.C. Sorensen, �??Numerical methods for large eigenvalue problems,�?? Acta Numerica 11, 519-584 (2002). [CrossRef]
- <a href="http://www.caam.rice.edu/software/ARPACK/">http://www.caam.rice.edu/software/ARPACK/
- Y. Saad and M.H. Schultz, �??GMRES: A generalised minimal residual algorithm for solving nonsymmetric linear systems,�?? SIAM J. Sci. Statist. Comput. 7, 856-869 (1986). [CrossRef]
- N.A. Nicorovici and R.C. McPhedran, �??Lattice sums for off-axis electromagnetic scattering by gratings,�?? Phys. Rev. E 50, 3143-3160 (1994). [CrossRef]
- C.M. Smith, N. Venkataraman, M.T. Gallagher, D. Müller, J. A. West, N. F. Borrelli, D. C. Allan & K. W. Koch, �??Low-loss hollow-core silica/air photonic bandgap fibre,�?? Nature 424, 657-659 (2003) [CrossRef] [PubMed]
- . P.J. Roberts, T.A. Birks, P.St.J. Russell, T.J. Shepherd and D.M. Atkin, �??Two-dimensional photonic bandgap structures as quasi-metals,�?? Opt. Lett. 21, 507-509 (1996). [CrossRef] [PubMed]
- V.V. Ravi Kanth Kumar, A.K. George, W.H. Reeves, J.C. Knight, P.St.J. Russell, F.G. Omenetto, and A.J. Taylor, �??Extruded soft glass photonic crystal fiber for ultrabroad supercontinuum generation,�?? Opt. Express 10, 1520-1525 (2002). <a href="http://www.opticsexpress.org/abstract.cfm?URI=OPEX-10-25-1520">http://www.opticsexpress.org/abstract.cfm?URI=OPEX-10-25-1520</a> [CrossRef] [PubMed]
- V.V. Ravi Kanth Kumar, A.K. George, J.C. Knight, P.St.J. Russell, �??Tellurite photonic crystal fibre,�?? Opt. Express 10, 2641-2645 (2003). <a href="http://www.opticsexpress.org/abstract.cfm?URI=OPEX-11-20-2641">http://www.o9pticsexpress.org/abstract.cfm?URI=OPEX-11-20-2641</a> [CrossRef]
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