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Invited Article

Integrated and topological liquid crystal photonics

Pages 418-429 | Received 18 Jul 2013, Accepted 20 Aug 2013, Published online: 25 Sep 2013

References

  • Yablonovitch E, Gmitter TJ. Photonic band structure: the face-centered-cubic case. Phys Rev Lett. 1989;63:1950–1953.
  • Yablonovitch E. Inhibited spontaneous emission in solid-state physics and electronics. Phys Rev Lett. 1987;58:2059–2062.
  • John S. Strong localization of photons in certain disordered dielectric superlattices. Phys Rev Lett. 1987;58:2486–2489.
  • Matsuo S, Shinya A, Kakitsuka T, Nozaki K, Segawa T, Sato T, Kawaguchi Y, Notomi M. High-speed ultracompact buried heterostructure photonic-crystal laser with 13 fJ of energy consumed per bit transmitted. Nat Photonics. 2010;4:648–654.
  • Hermes M, Vermolen ECM, Leunissen ME, Vossen DLJ, van Oostrum PDJ, Dijkstra M, van Blaaderen A. Nucleation of colloidal crystals on configurable seed structures. Soft Matter. 2011;7:4623–4628.
  • van Blaaderen A, Ruel R, Wiltzius P. Template-directed colloidal crystallization. Nature. 1997;385:321–324.
  • Aoki K, Miyazaki HT, Hirayama H, Inoshita K, Baba T, Sakoda K, Shinya N, Aoyagi Y. Microassembly of semiconductor threedimensional photonic crystals. Nat Mater. 2003;2:117–121.
  • Chiou PY, Ohta AT, Wu MC. Massively parallel manipulation of single cells and microparticles using optical images. Nature. 2005;436:370–372.
  • Mirkin CA, Letsinger RL, Mucic RC, Storhoff JJA. DNA-based method for rationally assembling nanoparticles into macroscopic materials. Nature. 1996;382:607–609.
  • Maruo S, Nakamura O, Kawata S. Three-dimensional microfabrication with two-photon-absorbed photopolymerization. Opt Lett. 1997;22:132–134.
  • Liang Di, Bowers JE. Recent progress in lasers on silicon. Nat Photonics. 2010;4:511–517.
  • Cladis PE, Pieranski P. Sur une nouvelle methode de decoration de la phase mesomorphe du MBBA. C R Acad Sci Paris. 1971;273:275–280.
  • Rault J. Sur une methode nouvelle d‘etude de l‘orientation moleculaire a la surface d‘un cholesterique. C R Acad Sci Paris. 1971;272:1275–1281.
  • Poulin P, Stark H, Lubensk TC, Weitz DA. Novel colloidal interactions in anisotropic fluids. Science. 1997;275:1770–1774.
  • Hotta J-C, Sasaki K, Masuhara H. Manipulation of liquid crystal textures with a focused near infrared laser beam. Appl Phys Lett. 1997;71:2085–2087.
  • Juodkazis S, Iwashita M, Takahashi T, Matsuo S, Misawa H. Fast optical switching by a laser-manipulated microdroplet of liquid crystal. Appl Phys Lett. 1999;74:3627–3629.
  • Gleeson HF, Wood TA, Dickinson M. Laser manipulation in liquid crystals: an approach to microfluidics and micromachines. Phil Trans R Soc A. 2006;364:2789–2805.
  • Iwashita Y, Tanaka H. Optical manipulation of defects in a lyotropic lamellar phase. Phys Rev Lett. 2003;90:045501-1–4.
  • Muševič I, Škarabot M, Babič D, Osterman N, Poberaj I, Nazarenko V, Nych A. Laser trapping of small colloidal particles in a nematic liquid crystal: clouds and ghosts. Phys Rev Lett. 2004;93:187801-1–4.
  • Smalyukh I, Kachynski AV, Kuzmin AN, Prasad PN. Laser trapping in anisotropic fluids and polarization-controlled particle dynamics. Proc Nat Acad Sci. 2006;103:18048–18053.
  • Muševič I, Škarabot M, Tkalec U, Ravnik M, Žumer S. Two dimensional nematic colloidal crystals self-assembled by topological defects. Science. 2006;313:954–958.
  • Škarabot M, Ravnik M, Žumer S, Tkalec U, Poberaj I, Babič D, Osterman N, Muševič I. Interactions of quadrupolar nematic colloids. Phys Rev E. 2007;76:051406-1–6.
  • Škarabot M, Ravnik M, Žumer S, Tkalec U, Poberaj I, Babič D, Osterman N, Muševič I. Two-dimensional dipolar nematic colloidal crystals. Phys Rev E. 2008;77:031705-1–8.
  • Ognysta U, Nych A, Nazarenko V, Muševič I, Škarabot M, Ravnik M, Žumer S, Poberaj I, Babič D. 2D interactions and binary crystals of dipolar and quadrupolar nematic colloids. Phys Rev Lett. 2008;100:217803-1–4.
  • Ognysta U, Nych A, Nazarenko V, Škarabot M, Muševič I. Design of 2D binary colloidal crystals in a nematic liquid crystal. Langmuir. 2009;25:12092–12099.
  • Nych A, Ognysta U, Škarabot M, Ravnik M, Žumer S, Muševič I. Assembly and control of 3D nematic dipolar colloidal crystals. Nat Commun. 2013;4:1489.doi:10.1038/ncomms2486
  • Ryzhkova A, Muševič I. Particle size effects on nanocolloidal interactions in nematic liquid crystals. Phys Rev E. 2013;87:032501-1–12.
  • Ravnik M, Škarabot M, Žumer S, Tkalec U, Poberaj I, Babič D, Osterman N, Muševič I. Entangled nematic colloidal dimers and wires. Phys Rev Lett. 2007;99:247801-1–4.
  • Terentjev EM. Disclination loops, standing alone and around solid particles in nematic liquid crystals. Phys Rev E. 1995;51:1330–1337.
  • Guzman O, Kim EB, Grollau S, Abbott NL, de Pablo JJ. Defect structure around two colloids in a liquid crystal. Phys Rev Lett. 2003;91:235507-1–4.
  • Araki T, Tanaka H. Colloidal aggregation in a nematic liquid crystal: topological arrest of particles by a single-stroke disclination. Phys Rev Lett. 2006;97:127801-1–4.
  • ŽumerS. Talk given at 21st International Liquid Crystal; Jul 2–7; Keystone, CO; 2006.
  • Tkalec U, Ravnik M, Čopar S, Žumer S, Muševič I. Reconfigurable knots and links in chiral nematic colloids. Science. 2011;333:62–65.
  • Bouligand Y. Recherches sur les textures des etats mesomorphiques. Dislocations coins et signification des cloisons de Grandjean-Cano dans les cholesteriques. J Phys (Paris). 1974;35:959–981.
  • Jampani VSR, Škarabot M, Ravnik M, Čopar S, Žumer S, Muševič I. Colloidal entanglement in highly twisted chiral nematic colloids: twisted loops, Hopf links, and trefoil knots. Phys Rev E. 2011;84:031703-1–9.
  • Dennis MR, King RP, Jack B, O’Holleran K, Padget MJ. Isolated optical vortex knots. Nature Physics. 2010;6:118–121.
  • Kleckner D, Irvine WTM. Creation and dynamics of knotted vortices. Nature Physics. 2013;9:253–258.
  • Humar M, Ravnik M, Pajk S, Muševič I. Electrically tunable liquid crystal optical microresonators. Nat Photonics. 2009;3:595–600.
  • Humar M, Muševič I. 3D microlasers from self-assembled cholesteric liquid-crystal microdroplets. Opt Express. 2010;18:26995–27003.
  • Gardiner DJ, Morris SM, Hands PJW, Mowatt C, Rutledge R, Wilkinson TD, Coles HJ. Paintable band-edge liquid crystal lasers. Opt Express. 2011;19:2432–2439.
  • Cipparrone G, Mazzulla A, Pane A, Hernandez RJ, Bartolino R. Chiral self-assembled solid microspheres: a novel multifunctional microphotonic device. Adv Mat. 2011;23:5773–5778.
  • Humar M, Muševič I. Surfactant sensing based on whispering-gallery-mode lasing in liquid-crystal microdroplets. Opt Express. 2011;19:19836–19844.
  • Cao WY, Munoz A, Palffy-Muhoray P, Taheri B. Lasing in a three-dimensional photonic crystal of the liquid crystal blue phase II. Nature Materials. 2002;1:111–113.
  • Tkalec U, Škarabot M, Muševič I. Interactions of micro-rods in a thin layer of a nematic liquid crystal. Soft Matter. 2008;4:2402–2409.
  • Hamley W, Castelletto V. Biological soft materials. Angew Chem Int Ed. 2007;46:4442–4455.
  • Pratibha R, Madhusudana NV. Cylindrical growth of smectic A liquid crystals from the isotropic phase in some binary mixtures. J Phys II France. 1992;2:383–400.
  • Peddireddy K, Kumar P, Thutupalli S, Herminghaus S, Ch B. Solubilization of thermotropic liquid crystal compounds in aqueous surfactant solutions. Langmuir. 2012;28:12426–12431.
  • Serra F, Vishnubhatla KC, Buscaglia M, Cerbino R, Osellame R, Cerullo G, Bellini T. Topological defects of nematic liquid crystals confined in porous networks. Soft Matter. 2011;7:10945–10950.
  • Jampani VSR, Humar M, Muševič I. Resonant transport of light from planar polymer waveguide into liquid-crystal microcavity. Opt Express. 2013;21:20506–20516.
  • Brasselet E. Tunable optical vortex arrays from a single nematic topological defect Phys. Rev Lett. 2012;108:87801-1–4.
  • Ackerman PJ, Qi Z, Smalyukh II. Optical generation of crystalline, quasicrystalline, and arbitrary arrays of torons in confined cholesteric liquid crystals for patterning of optical vortices in laser beams. Phys Rev E. 2012;86:021703-1–14.
  • Gin-ge CB, Ackerman PJ, Alexander GP, Kamien RD, Smalyukh II. Generating the Hopf fibration experimentally in nematic liquid crystals. Phys Rev Lett. 2013;110:237801-1–5.

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