Angular and polarization properties of a photonic crystal slab mirror
Optics Express, Vol. 12, Issue 8, pp. 1575-1582 (2004)
http://dx.doi.org/10.1364/OPEX.12.001575
Acrobat PDF (654 KB)
Abstract
It was recently demonstrated that a photonic crystal slab can function as a mirror for externally incident light along a normal direction with near-complete reflectivity over a broad wavelength range. We analyze the angular and polarization properties of such photonic crystal slab mirror, and show such reflectivity occurs over a sizable angular range for both polarizations. We also show that such mirror can be designed to reflect one polarization completely, while allowing 100% transmission for the other polarization, thus behaving as a polarization splitter with a complete contrast. The theoretical analysis is validated by comparing with experimental measurements.
© 2004 Optical Society of America
1. Introduction
S. Peng and G. M. Morris, “Experimental demonstration of resonant anomalies in diffraction from two-dimensional gratings,” Opt. Lett. 21, 549–551 (1996). [CrossRef] [PubMed]
Wonjoo Suh, M. F. Yanik, Olav Solgaard, and Shanhui Fan, “Displacement-sensitive photonic crystal structures based on guided resonance in photonic crystal slabs,” Appl. Phys. Lett. 82, 1999–2001 (2003). [CrossRef]
R. Magnusson and S. S. Wang, “New principle for optical filters,” Appl. Phys. Lett. 61, 1022–1024 (1991). [CrossRef]
S. Noda, M. Yokoyama, M. Imada, A. Chutinan, and M. Mochizuki, “Polarization Mode Control of Two-Dimensional Photonic Crystal Laser by Unit Cell Structure Design,” Science 293, 1123–1125 (2001). [CrossRef] [PubMed]
Shanhui Fan, Wonjoo Suh, and J.D. Joannopoulos, “Temporal coupled-mode theory for the Fano resonance in optical resonators,” J. Opt. Soc. Am. A 20, 569–572 (2003). [CrossRef]
2. Angular and polarization dependence of a photonic crystal slab mirror
Wonjoo Suh, M. F. Yanik, Olav Solgaard, and Shanhui Fan, “Displacement-sensitive photonic crystal structures based on guided resonance in photonic crystal slabs,” Appl. Phys. Lett. 82, 1999–2001 (2003). [CrossRef]
V. Lousse and J.P. Vigneron, “Use of Fano resonances for bistable optical transfer through photonic-crystal films,” Phys. Rev. B 69 (2004) (to be published). [CrossRef]
J.B. Pendry and A. MacKinnon, “Calculation of photon dispersion relations,” Phys. Rev. Lett. 69, 2772–2775 (1992). [CrossRef] [PubMed]
Wonjoo Suh, M. F. Yanik, Olav Solgaard, and Shanhui Fan, “Displacement-sensitive photonic crystal structures based on guided resonance in photonic crystal slabs,” Appl. Phys. Lett. 82, 1999–2001 (2003). [CrossRef]
3. Polarization-dependent mirror
Wonjoo Suh and Shanhui Fan, “Mechanically switchable photonic crystal filter with either all-pass transmission or flat-top reflection characteristics,” Opt. Lett. 28, 1763–1765 (2003). [CrossRef] [PubMed]
H. Sunnerrud, M. Karlsson, C. Xie, and P. A. Andrekson, “Polarization-Mode Dispersion in High-Speed Fiber-Optic Transmission Systems,” J. Lightwave Technol. 20, 12 (2002). [CrossRef]
4. Experimental results
5. Conclusion
Wonjoo Suh, M. F. Yanik, Olav Solgaard, and Shanhui Fan, “Displacement-sensitive photonic crystal structures based on guided resonance in photonic crystal slabs,” Appl. Phys. Lett. 82, 1999–2001 (2003). [CrossRef]
Wonjoo Suh and Shanhui Fan, “Mechanically switchable photonic crystal filter with either all-pass transmission or flat-top reflection characteristics,” Opt. Lett. 28, 1763–1765 (2003). [CrossRef] [PubMed]
Acknowledgments
References and links
S. Peng and G. M. Morris, “Experimental demonstration of resonant anomalies in diffraction from two-dimensional gratings,” Opt. Lett. 21, 549–551 (1996). [CrossRef] [PubMed] | |
Wonjoo Suh, M. F. Yanik, Olav Solgaard, and Shanhui Fan, “Displacement-sensitive photonic crystal structures based on guided resonance in photonic crystal slabs,” Appl. Phys. Lett. 82, 1999–2001 (2003). [CrossRef] | |
R. Magnusson and S. S. Wang, “New principle for optical filters,” Appl. Phys. Lett. 61, 1022–1024 (1991). [CrossRef] | |
M. Kanskar, P. Paddon, V. Pacradouni, R. Morin, A. Busch, Jeff F. Young, S.R. Johnson, Jim MacKenzie, and T. Tiedje, “Observation of leaky slab modes in an air-bridged semiconductor waveguide with a two-dimensional photonic lattice,” Appl. Phys. Lett. 70, 1438–1440 (1997). [CrossRef] | |
Shanhui Fan and J. D. Joannopoulos, “Analysis of guided resonances in photonic crystal slabs,” Phys. Rev. B 65, 235112 1–8 (2002). [CrossRef] | |
S. Noda, M. Yokoyama, M. Imada, A. Chutinan, and M. Mochizuki, “Polarization Mode Control of Two-Dimensional Photonic Crystal Laser by Unit Cell Structure Design,” Science 293, 1123–1125 (2001). [CrossRef] [PubMed] | |
Shanhui Fan, Wonjoo Suh, and J.D. Joannopoulos, “Temporal coupled-mode theory for the Fano resonance in optical resonators,” J. Opt. Soc. Am. A 20, 569–572 (2003). [CrossRef] | |
V. Lousse and J.P. Vigneron, “Use of Fano resonances for bistable optical transfer through photonic-crystal films,” Phys. Rev. B 69 (2004) (to be published). [CrossRef] | |
J.B. Pendry and A. MacKinnon, “Calculation of photon dispersion relations,” Phys. Rev. Lett. 69, 2772–2775 (1992). [CrossRef] [PubMed] | |
Wonjoo Suh and Shanhui Fan, “Mechanically switchable photonic crystal filter with either all-pass transmission or flat-top reflection characteristics,” Opt. Lett. 28, 1763–1765 (2003). [CrossRef] [PubMed] | |
H. Sunnerrud, M. Karlsson, C. Xie, and P. A. Andrekson, “Polarization-Mode Dispersion in High-Speed Fiber-Optic Transmission Systems,” J. Lightwave Technol. 20, 12 (2002). [CrossRef] |
OCIS Codes
(230.0230) Optical devices : Optical devices
(230.4040) Optical devices : Mirrors
(230.5440) Optical devices : Polarization-selective devices
(260.5740) Physical optics : Resonance
ToC Category:
Focus Issue: Photonic crystals and holey fibers
History
Original Manuscript: March 5, 2004
Revised Manuscript: April 7, 2004
Published: April 19, 2004
Citation
Virginie Lousse, Wonjoo Suh, Onur Kilic, Sora Kim, Olav Solgaard, and Shanhui Fan, "Angular and polarization properties of a photonic crystal slab mirror," Opt. Express 12, 1575-1582 (2004)
http://www.opticsinfobase.org/oe/abstract.cfm?URI=oe-12-8-1575
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References
- S. Peng and G. M. Morris, ???Experimental demonstration of resonant anomalies in diffraction from twodimensional gratings,??? Opt. Lett. 21, 549- 551 (1996). [CrossRef] [PubMed]
- Wonjoo Suh, M. F. Yanik, Olav Solgaard, and Shanhui Fan, ???Displacement-sensitive photonic crystal structures based on guided resonance in photonic crystal slabs,??? Appl. Phys. Lett. 82, 1999-2001 (2003). [CrossRef]
- R. Magnusson and S. S. Wang, ???New principle for optical filters,??? Appl. Phys. Lett. 61, 1022-1024 (1991). [CrossRef]
- M. Kanskar, P. Paddon, V. Pacradouni, R. Morin, A. Busch, Jeff F. Young, S.R. Johnson, Jim MacKenzie, and T. Tiedje, ???Observation of leaky slab modes in an air-bridged semiconductor waveguide with a twodimensional photonic lattice,??? Appl. Phys. Lett. 70, 1438-1440 (1997). [CrossRef]
- Shanhui Fan and J. D. Joannopoulos, ???Analysis of guided resonances in photonic crystal slabs,??? Phys. Rev. B 65, 235112 1-8 (2002). [CrossRef]
- S. Noda, M. Yokoyama, M. Imada, A. Chutinan, and M. Mochizuki, ???Polarization Mode Control of Two- Dimensional Photonic Crystal Laser by Unit Cell Structure Design,??? Science 293, 1123-1125 (2001). [CrossRef] [PubMed]
- Shanhui Fan, Wonjoo Suh, and J.D. Joannopoulos, ???Temporal coupled-mode theory for the Fano resonance in optical resonators,??? J. Opt. Soc. Am. A 20, 569-572 (2003). [CrossRef]
- V. Lousse and J.P. Vigneron, ???Use of Fano resonances for bistable optical transfer through photonic-crystal films,??? Phys. Rev. B 69 (2004) (to be published). [CrossRef]
- J.B. Pendry and A. MacKinnon, ???Calculation of photon dispersion relations,??? Phys. Rev. Lett. 69, 2772 - 2775 (1992). [CrossRef] [PubMed]
- Wonjoo Suh and Shanhui Fan, ???Mechanically switchable photonic crystal filter with either all-pass transmission or flat-top reflection characteristics,??? Opt. Lett. 28, 1763-1765 (2003). [CrossRef] [PubMed]
- H. Sunnerrud, M. Karlsson, C. Xie, and P. A. Andrekson, ???Polarization-Mode Dispersion in High-Speed Fiber-Optic Transmission Systems,??? J. Lightwave Technol. 20, 12 (2002). [CrossRef]
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