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Articles

On the bimetallic 1D photonic crystals under angular incidence excitation

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Pages 1075-1085 | Received 20 Jan 2016, Accepted 25 Mar 2016, Published online: 04 May 2016

References

  • Yablonovitch E. Inhibited spontaneous emission in solid-state physics and electronics. Phys. Rev. Lett. 1987;58:2059–2062.10.1103/PhysRevLett.58.2059
  • Johnson SG, Joannopoulos JD. Block-iterative frequency-domain methods for Maxwell’s equations in a planewave basis. Opt. Express. 2001;8:173–190.10.1364/OE.8.000173
  • Vahala KJ. Optical microcavities. Nature. 2003;424:839–846.10.1038/nature01939
  • Morris DJ. Photonic crystals: a review of future. Nat. Mater. 2007;6:177–178.
  • Sheng X, Broderick LZ, Kimerling LC. Photonic crystal structures for light trapping in thin-film Si solar cells: modeling, process and optimizations. Opt. Commun. 2014;314:41–47.10.1016/j.optcom.2013.07.085
  • Fink Y, Ripin DJ, Fan S, et al. Guiding optical light in air using an all-dielectric structure. J. Lightwave Technol. 1999;17:2039–2041.10.1109/50.802992
  • Jamois C, Wehrspohn RB, Andreani LC, et al. Silicon-based two-dimensional photonic crystal waveguides. Photonics Nanostruct. Fundam. Appl. 2003;1:1–13.10.1016/j.photonics.2003.10.001
  • Kurt H, Citrin DS. Photonic crystals for biochemical sensing in the terahertz region. Appl. Phys. Lett. 2005;85:041108.1–041108.3.
  • Joannopoulos JD, Johnson SG, Winn JN, et al. Photonic crystals: molding the flow of light. 2nd ed. Princeton: Princeton Univ. Press; 2008.
  • Cooper J, Glidle A, De La Rue R. Photonic crystal structures in molecular biosensing. Opt. Photonics News. 2010;21:26–31.10.1364/OPN.21.9.000026
  • Segal N, Keren-Zur S, Hendler N, et al. Controlling light with metamaterial-based nonlinear photonic crystals. Nat. Photonics. 2015;9:180–184.10.1038/nphoton.2015.17
  • Ghasemi M, Choudhury PK, Dehzangi A. Nanoengineered thin films of copper for the optical monitoring of urine – a comparative study of the helical and columnar nanostructures. J. Electromagn. Waves Appl. 2015;29:2321–2329.10.1080/09205071.2015.1070107
  • Choudhury PK, El-Nasr MA. Electromagnetics for biomedical and medicinal applications. J. Electromagn. Waves Appl. 2015;29:2275–2277.10.1080/09205071.2015.1103984
  • Baqir MA, Ghasemi M, Choudhury PK, et al. Design and analysis of nanostructured subwavelength metamaterial absorber operating in the UV and visible spectral range. J. Electromagn. Waves Appl. 2015;29:2408–2419.10.1080/09205071.2015.1073124
  • Gjessing J, Sudbø A, Marstein ES. Comparison of periodic light-trapping structures in thin crystalline silicon solar cells. J. Appl. Phys. 2011;110:033104.1–033104.8.
  • Haugan E, Granlund H, Gjessing J, et al. Colloidal crystals as templates for light harvesting structures in solar cells. Energy Proc. 2011;10:292–296.10.1016/j.egypro.2011.10.193
  • Wang KX, Yu Z, Liu V, et al. Absorption enhancement in ultrathin crystalline silicon solar cells with antireflection and light-trapping nanocone gratings. Nano Lett. 2012;12:1616–1619.10.1021/nl204550q
  • Bozzola A, Liscidini M, Andreani LC. Photonic light-trapping versus Lambertian limits in thin film silicon solar cells with 1D and 2D periodic pattern. Opt. Express. 2012;20:1–21.
  • Gevorgyan AH. Photonic band gaps from stack of right- and left-handed chiral photonic crystal layers. Phys. Rev. E. 2012;85:21704.1–21704.12.
  • Li Q, He X, Wang Y, et al. Review of spectral imaging technology in biomedical engineering: achievements and challenges. J. Biomed. Opt. 2013;18:100901.1–100901.28.
  • Favreau PF, Rich TC, Prabhat P, et al. Tunable thin-film optical filters for hyperspectral microscopy. Proc. SPIE. 2013;8589:85890R.1–85890R.5.
  • Maigyte L, Staliunas K. Spatial filtering with photonic crystals. Appl. Phys. Rev. 2015;2:011102.1–011102.17.
  • Huisman SR, Nair RV, Harsuiker A, et al. Observation of sub-Bragg diffraction of waves in crystals. Phys. Rev. Lett. 2012;108:0839011–0839014.
  • Nair RV, Jagatap BN. Multiple Bragg diffraction at W point in the face centered cubic photonic crystals. J. Nanophotonics. 2015;9:093076.1–093076.10.
  • Li HY, Zhou SM, Li J, et al. Analysis of the Drude model in metallic films. Appl. Opt. 2001;40:6307–6311.10.1364/AO.40.006307
  • Oughstun KE, Sherman GC. Electromagnetic pulse propagation in causal dielectrics. Berlin: Springer Series on Wave Phenomena, Springer-Verlag; 1994.10.1007/978-3-642-61227-5
  • Rakić AD, Djurišić AB, Elazar JM, et al. Optical properties of metallic films for vertical-cavity optoelectronic devices. Appl. Opt. 1998;37:5271–5283.10.1364/AO.37.005271
  • Born M, Wolf E. Principles of optics. 7th ed. Cambridge: Cambridge Univ. Press; 1999.10.1017/CBO9781139644181
  • Yeh P. Optical waves in layered media. New York (NY): Wiley; 2005.
  • Djavid M, Mirtaheri SA, Abrishamian MS. Photonic crystal notch-filter design using particle swarm optimization theory and finite-difference time-domain analysis. J. Opt. Soc. Am. B. 2009;26:849–853.10.1364/JOSAB.26.000849
  • Cos J, Ferre-Borrull J, Pallares J, et al. Tunable Fabry–Pérot filter based on one-dimensional photonic crystals with liquid crystal components. Opt. Commun. 2009;282:1220–1225.10.1016/j.optcom.2008.11.074
  • Ghasemi M, Baqir MA, Choudhury PK. On the metasurface based comb filter. IEEE Photonics Technol. Lett. 2016;28:1100–1103.

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