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Optical guided mode resonance filter on a flexible substratePeter Reader-Harris, Armando Ricciardi, Thomas Krauss, and Andrea Di Falco »View Author Affiliations
Peter Reader-Harris,1,*
Armando Ricciardi,2
Thomas Krauss,1
and Andrea Di Falco1
1School of Physics and Astronomy, University of St. Andrews, North Haugh, St. Andrews, KY16 9SS, United Kingdom 2Optoelectronic Division, Department of Engineering, University of Sannio, I-82100, Benevento, Italy *Corresponding author: pjrh@st-andrews.ac.uk |
Optics Express, Vol. 21, Issue 1, pp. 1002-1007 (2013)
http://dx.doi.org/10.1364/OE.21.001002
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Abstract
We demonstrate the operation of a flexible optical filter based on guided mode resonances that operates in the visible regime. The filter is fabricated on a free standing polymeric membrane of 1.3 μm thickness and we show how the geometrical design parameters of the filter determine its optical properties, and how various types of filter can be made with this scheme. To highlight the versatility and robustness of the approach, we mount a filter onto a collimated fibre output and demonstrate successful wavelength filtering.
© 2013 OSA
OCIS Codes
(050.1950) Diffraction and gratings : Diffraction gratings
(250.5460) Optoelectronics : Polymer waveguides
(220.4241) Optical design and fabrication : Nanostructure fabrication
(250.5403) Optoelectronics : Plasmonics
(050.6624) Diffraction and gratings : Subwavelength structures
ToC Category:
Diffraction and Gratings
History
Original Manuscript: November 13, 2012
Revised Manuscript: December 22, 2012
Manuscript Accepted: December 28, 2012
Published: January 9, 2013
Virtual Issues
Vol. 8, Iss. 2 Virtual Journal for Biomedical Optics
Citation
Peter Reader-Harris, Armando Ricciardi, Thomas Krauss, and Andrea Di Falco, "Optical guided mode resonance filter on a flexible substrate," Opt. Express 21, 1002-1007 (2013)
http://www.opticsinfobase.org/vjbo/abstract.cfm?URI=oe-21-1-1002
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References
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- I. M. Pryce, K. Aydin, Y. A. Kelaita, R. M. Briggs, and H. A. Atwater, “Highly strained compliant optical metamaterials with large frequency tunability,” Nano Lett.10, 4222–4227 (2010). [CrossRef] [PubMed]
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- D. Chanda, K. Shigeta, S. Gupta, T. Cain, A. Carlson, A. Mihi, A. J. Baca, G. R. Bogart, P. Braun, and J. a. Rogers, “Large-area flexible 3D optical negative index metamaterial formed by nanotransfer printing,” Nat. Nanotechnol.6, 402–407 (2011). [CrossRef] [PubMed]
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- A. Christ, T. Zentgrat, J. Kuhl, S. G. Tikhodeev, N. Gippius, and H. Giessen, “Optical properties of planar metallic photonic crystal structures: experiment and theory,” Phys. Rev. B70, 1–15 (2004). [CrossRef]
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- G. Vincent, E. Sakat, P. Ghenuche, S. Collin, N. Bardou, S. Rommeluere, J. Primot, J. Deschamps, F. Pardo, J.-L. Pelouard, and R. Haidar, “Spectral filtering with subwavelength gratings: overview and latest advances,” Proc. SPIE8268, 826807 (2012). [CrossRef]
- R. Haidar, G. Vincent, S. Collin, N. Bardou, N. Guerineau, J. Deschamps, and J.-L. Pelouard, “Free-standing subwavelength metallic gratings for snapshot multispectral imaging,” Appl. Phys. Lett.96, 221104 (2010). [CrossRef]
- S. Collin, G. Vincent, R. Haïdar, N. Bardou, S. Rommeluère, and J.-L. Pelouard, “Nearly perfect Fano transmission resonances through nanoslits drilled in a metallic membrane,” Phys. Rev. Lett.104, 1–4 (2010). [CrossRef]
- M. Consales, A. Ricciardi, A. Crescitelli, E. Esposito, A. Cutolo, and A. Cusano, “Lab-on-fiber technology: toward multifunctional optical nanoprobes,” ACS Nano6, 3163–3170 (2012). [CrossRef] [PubMed]
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- A. Ricciardi, S. Campopiano, A. Cusano, T. F. Krauss, and L. O’Faolain, “Broadband mirrors in the near-infrared based on subwavelength gratings in SOI,” IEEE Photonics J.2, 696–702 (2010). [CrossRef]
- M. Consales, A. Ricciardi, A. Crescitelli, E. Esposito, A. Cutolo, and A. Cusano, “Lab-on-fiber technology: toward multifunctional optical nanoprobes,” ACS Nano6, 3163–3170 (2012). [CrossRef] [PubMed]
- I. Bergmair, B. Dastmalchi, M. Bergmair, a. Saeed, W. Hilber, G. Hesser, C. Helgert, E. Pshenay-Severin, T. Pertsch, E. B. Kley, U. Hübner, N. H. Shen, R. Penciu, M. Kafesaki, C. M. Soukoulis, K. Hingerl, M. Muehlberger, and R. Schoeftner, “Single and multilayer metamaterials fabricated by nanoimprint lithography,” Nanotechnology22, 325301 (2011). [CrossRef] [PubMed]
- S. P. Burgos, R. de Waele, A. Polman, and H. A. Atwater, “A single-layer wide-angle negative-index metamaterial at visible frequencies,” Nat. Mater.9, 407–412 (2010). [CrossRef] [PubMed]
- G. Vincent, E. Sakat, P. Ghenuche, S. Collin, N. Bardou, S. Rommeluere, J. Primot, J. Deschamps, F. Pardo, J.-L. Pelouard, and R. Haidar, “Spectral filtering with subwavelength gratings: overview and latest advances,” Proc. SPIE8268, 826807 (2012). [CrossRef]
- R. Haidar, G. Vincent, S. Collin, N. Bardou, N. Guerineau, J. Deschamps, and J.-L. Pelouard, “Free-standing subwavelength metallic gratings for snapshot multispectral imaging,” Appl. Phys. Lett.96, 221104 (2010). [CrossRef]
- A. Di Falco, Y. Zhao, and A. Alu, “Optical metasurfaces with robust angular response on flexible substrates,” Appl. Phys. Lett.99, 163110 (2011). [CrossRef]
- A. Di Falco, M. Ploschner, and T. F. Krauss, “Flexible metamaterials at visible wavelengths,” New J. Phys.12, 113006 (2010). [CrossRef]
- M. Consales, A. Ricciardi, A. Crescitelli, E. Esposito, A. Cutolo, and A. Cusano, “Lab-on-fiber technology: toward multifunctional optical nanoprobes,” ACS Nano6, 3163–3170 (2012). [CrossRef] [PubMed]
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- A. Miroshnichenko, S. Flach, and Y. Kivshar, “Fano resonances in nanoscale structures,” Rev. Mod. Phys.82, 2257–2298 (2010). [CrossRef]
- A. G. Borisov, F. García de Abajo, and S. Shabanov, “Role of electromagnetic trapped modes in extraordinary transmission in nanostructured materials,” Phys. Rev. B71, 1–7 (2005). [CrossRef]
- F. J. García-Vidal and L. Martín-Moreno, “Transmission and focusing of light in one-dimensional periodically nanostructured metals,” Phys. Rev. B66, 1–10 (2002). [CrossRef]
- G. Vincent, E. Sakat, P. Ghenuche, S. Collin, N. Bardou, S. Rommeluere, J. Primot, J. Deschamps, F. Pardo, J.-L. Pelouard, and R. Haidar, “Spectral filtering with subwavelength gratings: overview and latest advances,” Proc. SPIE8268, 826807 (2012). [CrossRef]
- B. Luk’yanchuk, N. I. Zheludev, S. A. Maier, N. J. Halas, P. Nordlander, H. Giessen, and C. T. Chong, “The Fano resonance in plasmonic nanostructures and metamaterials,” Nat. Mater.9, 707–715 (2010). [CrossRef]
- A. Christ, T. Zentgrat, J. Kuhl, S. G. Tikhodeev, N. Gippius, and H. Giessen, “Optical properties of planar metallic photonic crystal structures: experiment and theory,” Phys. Rev. B70, 1–15 (2004). [CrossRef]
- A. Christ, T. Zentgrat, J. Kuhl, S. G. Tikhodeev, N. Gippius, and H. Giessen, “Optical properties of planar metallic photonic crystal structures: experiment and theory,” Phys. Rev. B70, 1–15 (2004). [CrossRef]
- R. Haidar, G. Vincent, S. Collin, N. Bardou, N. Guerineau, J. Deschamps, and J.-L. Pelouard, “Free-standing subwavelength metallic gratings for snapshot multispectral imaging,” Appl. Phys. Lett.96, 221104 (2010). [CrossRef]
- D. Chanda, K. Shigeta, S. Gupta, T. Cain, A. Carlson, A. Mihi, A. J. Baca, G. R. Bogart, P. Braun, and J. a. Rogers, “Large-area flexible 3D optical negative index metamaterial formed by nanotransfer printing,” Nat. Nanotechnol.6, 402–407 (2011). [CrossRef] [PubMed]
- G. Vincent, E. Sakat, P. Ghenuche, S. Collin, N. Bardou, S. Rommeluere, J. Primot, J. Deschamps, F. Pardo, J.-L. Pelouard, and R. Haidar, “Spectral filtering with subwavelength gratings: overview and latest advances,” Proc. SPIE8268, 826807 (2012). [CrossRef]
- R. Haidar, G. Vincent, S. Collin, N. Bardou, N. Guerineau, J. Deschamps, and J.-L. Pelouard, “Free-standing subwavelength metallic gratings for snapshot multispectral imaging,” Appl. Phys. Lett.96, 221104 (2010). [CrossRef]
- S. Collin, G. Vincent, R. Haïdar, N. Bardou, S. Rommeluère, and J.-L. Pelouard, “Nearly perfect Fano transmission resonances through nanoslits drilled in a metallic membrane,” Phys. Rev. Lett.104, 1–4 (2010). [CrossRef]
- B. Luk’yanchuk, N. I. Zheludev, S. A. Maier, N. J. Halas, P. Nordlander, H. Giessen, and C. T. Chong, “The Fano resonance in plasmonic nanostructures and metamaterials,” Nat. Mater.9, 707–715 (2010). [CrossRef]
- C. Hammond, “A symmetrical representation of the geometrical optics of the light microscope,” J. Microsc.192, 63–68 (1998). [CrossRef]
- I. Bergmair, B. Dastmalchi, M. Bergmair, a. Saeed, W. Hilber, G. Hesser, C. Helgert, E. Pshenay-Severin, T. Pertsch, E. B. Kley, U. Hübner, N. H. Shen, R. Penciu, M. Kafesaki, C. M. Soukoulis, K. Hingerl, M. Muehlberger, and R. Schoeftner, “Single and multilayer metamaterials fabricated by nanoimprint lithography,” Nanotechnology22, 325301 (2011). [CrossRef] [PubMed]
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