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Articles

Effect of self-collimated beams on the operation of photonic crystal decoders

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Pages 1440-1448 | Received 30 Oct 2015, Accepted 12 Jun 2016, Published online: 06 Jul 2016

References

  • John S. Strong localization of photons in certain disordered dielectric superlattices. Phys. Rev. Lett. 1987;58:2486–2489.
  • Joannopoulos JD, Mead RD, Winn JN. Photonic crystals: molding the flow of light: Princeton (NJ): Princeton University Press; 1995.
  • Wu Z, Xie K, Yang H. Band gap properties of two dimensional photonic crystals with rhombic lattice. Optik. 2012;123:2639–2644.
  • Kosaka H, Kawashima T, Tomita A. Self-collimating phenomena in photonic crystals. Appl. Phys. Lett. 1999;74:1212–1214.
  • Witzens J, Loncar M, Scherer A. Self-collimation in planar photonic crystals. IEEE J. Sel. Top. Quant. Electron. 2002;8:1246–1257.
  • Rostami A, Haddadpour A, Nazari F, et al. Proposal for an ultra-compact tunable wavelength division multiplexing optical filter based on quasi 2D photonic crystal. Opt. Express. 2010;12:1–7. doi:10.1088/2040-8978/12/1/015405.
  • Wu CJ, Wang ZH. Properties of defect modes in one-dimensional photonic crystals. Prog. Electromagnet. Res. 2010;103:169–184.
  • Alipour-Banaei H, Mehdizadeh F. Significant role of photonic crystal resonant cavities in WDM and DWDM communication tunable filters. Optik Int. J. Light Electron. Opt. 2013;124:2639–2644.
  • Djavid M, Abrishamian MS. Multi-channel drop filters using photonic crystal ring resonators. Optik. 2011;123:167–170.
  • Saghirzadeh Darki B, Granpayeh N. Improving the performance of a photonic crystal ring-resonator-based channel drop filter using particle swarm optimization method. Optics Commun. 2010;283:4099–4103.
  • Djavid M, Ghaffari A, Monifi F. T-shaped channel-drop filters using photonic crystal ring resonators. Phys. Med. 2008;40:3151–3154.
  • Qiang Z, Zhou W, Soref RA. Optical add-drop filters based on photonic crystal ring resonators. Opt. Express. 2007;15:1823–1831.
  • Mehdizadeh F, Alipour-Banaei H, Serajmohammadi S. Channel-drop filter based on a photonic crystal ring resonator. J. Opt. 2013;15:1–7.
  • Alipour-Banaei H. T-shaped channel drop filter based on photonic crystal ring resonator. Optik – Int. J. Light Electron. Optics. 2014;125:5348–5351.
  • Youcef Mahmoud MY, Bassou G, Taalbi A, et al. Optical channel drop filters based on photonic crystal ring resonators. Opt. Commun. 2012;285:368–372.
  • Bernier D, Le Roux X, Lupu A, et al. Compact low crosstalk CWDM demultiplexer using photonic crystal superprism. Opt. Express. 2008;16:17209–17214.
  • Momeni B, Huan J, Soltani M, et al. Compact wavelength demultiplexing using focusing negative index photonic crystal superprisms. Opt. Express. 2006;42:2410–2422.
  • Banaei H.A, Rostami A. A novel proposal for passive all-optical demultiplexer for DWDM systems using 2-D photonic crystals. J. Electromagnet. Waves A. 2008;22:471–482.
  • Alipour-Banaei H, Mehdizadeh F, Hassangholizadeh-Kashtiban M. A novel proposal for all optical PhC-based demultiplexers suitable for DWDM applications. Opt. Quant. Electron. 2013;45:1063–1075.
  • Zhang X, Liao Q, Yu T, et al. Novel ultracompact wavelength division demultiplexer based on photonic band gap. Opt. Commun. 2012;285:274–276.
  • Rakhshani MR, Mansouri-Birjandi MA. Design and simulation of wavelength demultiplexer based on heterostructure photonic crystals ring resonators. Phys. E. 2013;50:97–101.
  • Djavid M, Monifi F, Ghaffari A, et al. Heterostructure wavelength division demultiplexers using photonic crystal ring resonators. Opt. Commun. 2008;281:4028–4032.
  • Rostami A, Banaei HA, Nazari F, et al. An ultra compact photonic crystal wavelength division demultiplexer using resonance cavities in a modified Y-branch structure. Optik – Int. J. Light Electron. Opt. 2011;122:1481–1485.
  • Rostami A, Nazari F, BanaeiHA, et al. A novel proposal for DWDM demultiplexer design using modified T photonic crystal structure. Photonics Nanostruct. Fundam. Appl. 2010;8:14–22.
  • Alipour-Banaei H, Mehdizadeh F, Serajmohammadi S. A novel 4-channel demultiplexer based on photonic crystal ring resonators. Optik. 2013; doi:10.1016/j.ijleo.2013.04.117.
  • Gunyakov VA, Gerasimov VP, Myslivets SA, et al. Thermooptical switching in a one-dimensional photonic crystal. Tech. Phys. Lett. 2006;32:951–953.
  • Camargo EA, Harold MHC, De La Rue RM. 2D photonic crystal thermo-optic switch based on AlGaAs/GaAs epitaxial structure. Opt. Express. 2004;12:588–592.
  • Sharkawy A, Shi S, Prather DW. Electro-optical switching using coupled photonic crystal waveguides. Opt. Express. 2002;10:1048–1059.
  • Nakamura H, et al. Ultra-fast photonic crystal/quantum dot alloptical switch for future photonic networks. Opt. Express. 2004;12:6606–6614.
  • Chang KD, Liu CY. Electro-optical channel drop switching in a photonic crystal waveguide-cavity side-coupling system. Opt. Commun. 2014;316:10–16.
  • Shen J, et al. Ultrafast all-optical switching in one dimensional photonic crystal with two defects. Opt. Express. 2005;14:858–865.
  • Danaie M, Kaatuzian H. Improvement of power coupling in a nonlinear photonic crystal directional coupler switch. Photonics Nanostruct. Fundam. Appl. 2011;9:70–81.
  • Haghighi SB, GhayourR, Vakili B. Photonic crystal optical switch using a new slow light waveguideandheterostructure Y-junctions. Optik xxx. 2013;124:6292–6297.
  • Rao W, Song Y, Liu M, et al. All-optical switch based on photonic crystal microcavity with multi-resonant modes. Optik – Int. J. Light Electron. Opt. 2010;121:1934–1936.
  • Ahmadi Tameh T, Isfahani BM, Granpayeh N, et al. Improving the performance of all-optical switching based on nonlinear photonic Crystal microring resonators. AEU – Int. J. Electron. Commun. 2011;65:281–287.
  • Chen Z, Li Z, Li B. A 2-to-4 decoder switch in SiGe/Si multimode inteference. Opt. Express. 2006;14:2671–2678.
  • Serajmohammadi S, Alipour-Banaei H, Mehdizadeh F. All optical decoder switch based on photonic crystal ring resonators. Opt. Quant. Electron. 2015;47:1109–1115.
  • Alipour-Banaei H, Mehdizadeh F, Serajmohammadi S, et al. A 2*4 all optical decoder switch based on photonic crystal ring resonators. J. Modern Opt. 2015;62:430–434.
  • Johnson SG, Joannopoulos JD. Block-iterative frequency-domain methods for Maxwell’s equations in a planewave basis. Opt. Express. 2001;8:173–190.
  • Kim M-W, Lee S-G, Kim T-T, et al. Experimental demonstration of bending and splitting of self-collimated beams in two-dimensional photonic crystals. Appl. Phys. Lett. 2007;90:1131211–1131213.
  • Gedney SD. Introduction to finite-difference time-domain (FDTD) method for electromagnetics. Lexington (KY): Morgan & Claypool; 2006.
  • Qiu M. Effective index method for heterostructure-slab-waveguide-based two-dimensional photonic crystals. Appl. Phys. Lett. 2002;81:1163–1165.

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