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Results: 1 to 20 of 409

Similar articles for PubMed (Select 11713524)

1.

On-chip natural assembly of silicon photonic bandgap crystals.

Vlasov YA, Bo XZ, Sturm JC, Norris DJ.

Nature. 2001 Nov 15;414(6861):289-93.

PMID:
11713524
2.

Large-scale synthesis of a silicon photonic crystal with a complete three-dimensional bandgap near 1.5 micrometres

Blanco A, Chomski E, Grabtchak S, Ibisate M, John S, Leonard SW, Lopez C, Meseguer F, Miguez H, Mondia JP, Ozin GA, Toader O, van Driel HM.

Nature. 2000 May 25;405(6785):437-40.

PMID:
10839534
3.

Self-assembly route for photonic crystals with a bandgap in the visible region.

Hynninen AP, Thijssen JH, Vermolen EC, Dijkstra M, van Blaaderen A.

Nat Mater. 2007 Mar;6(3):202-5. Epub 2007 Feb 11.

PMID:
17293851
4.

Direct creation of three-dimensional photonic crystals by a top-down approach.

Takahashi S, Suzuki K, Okano M, Imada M, Nakamori T, Ota Y, Ishizaki K, Noda S.

Nat Mater. 2009 Sep;8(9):721-5. doi: 10.1038/nmat2507. Epub 2009 Aug 9.

PMID:
19668208
5.

Optomechanical crystals.

Eichenfield M, Chan J, Camacho RM, Vahala KJ, Painter O.

Nature. 2009 Nov 5;462(7269):78-82. doi: 10.1038/nature08524. Epub 2009 Oct 18.

PMID:
19838165
6.

Photonic crystals--a step towards integrated circuits for photonics.

Thylén L, Qiu M, Anand S.

Chemphyschem. 2004 Sep 20;5(9):1268-83.

PMID:
15499844
7.

Three-dimensional control of light in a two-dimensional photonic crystal slab.

Chow E, Lin SY, Johnson SG, Villeneuve PR, Joannopoulos JD, Wendt JR, Vawter GA, Zubrzycki W, Hou H, Alleman A.

Nature. 2000 Oct 26;407(6807):983-6.

PMID:
11069173
8.

Manipulation of photons at the surface of three-dimensional photonic crystals.

Ishizaki K, Noda S.

Nature. 2009 Jul 16;460(7253):367-70. doi: 10.1038/nature08190.

PMID:
19606144
9.

Diamond-structured photonic crystals.

Maldovan M, Thomas EL.

Nat Mater. 2004 Sep;3(9):593-600. Review.

PMID:
15343291
10.

Microassembly of semiconductor three-dimensional photonic crystals.

Aoki K, Miyazaki HT, Hirayama H, Inoshita K, Baba T, Sakoda K, Shinya N, Aoyagi Y.

Nat Mater. 2003 Feb;2(2):117-21.

PMID:
12612697
11.

Trapping and emission of photons by a single defect in a photonic bandgap structure

Noda S, Chutinan A, Imada M.

Nature. 2000 Oct 5;407(6804):608-10.

PMID:
11034204
12.

All-metallic three-dimensional photonic crystals with a large infrared bandgap.

Fleming JG, Lin SY, El-Kady I, Biswas R, Ho KM.

Nature. 2002 May 2;417(6884):52-5.

PMID:
11986662
13.

A three-dimensional optical photonic crystal with designed point defects.

Qi M, Lidorikis E, Rakich PT, Johnson SG, Joannopoulos JD, Ippen EP, Smith HI.

Nature. 2004 Jun 3;429(6991):538-42.

PMID:
15175746
14.

Fabrication of photonic crystals for the visible spectrum by holographic lithography

Campbell M, Sharp DN, Harrison MT, Denning RG, Turberfield AJ.

Nature. 2000 Mar 2;404(6773):53-6.

PMID:
10716437
15.

High-speed fabrication of patterned colloidal photonic structures in centrifugal microfluidic chips.

Lee SK, Yi GR, Yang SM.

Lab Chip. 2006 Sep;6(9):1171-7. Epub 2006 Jun 23.

PMID:
16929396
16.

The langmuir-blodgett approach to making colloidal photonic crystals from silica spheres.

Bardosova M, Pemble ME, Povey IM, Tredgold RH.

Adv Mater. 2010 Aug 3;22(29):3104-24. doi: 10.1002/adma.200903708. Review. Erratum in: Adv Mater. 2010 Dec 1;22(45):5081.

PMID:
20589747
17.

Feasibility of tunable MEMS photonic crystal devices.

Rajic S, Corbeil JL, Datskos PG.

Ultramicroscopy. 2003 Oct-Nov;97(1-4):473-9.

PMID:
12801704
18.
19.

Point defect geometries in inverted opal photonic crystals.

Chan DL, Lidorikis E, Joannopoulos JD.

Phys Rev E Stat Nonlin Soft Matter Phys. 2005 May;71(5 Pt 2):056602. Epub 2005 May 5.

PMID:
16089663
20.

Automated preparation method for colloidal crystal arrays of monodisperse and binary colloid mixtures by contact printing with a pintool plotter.

Burkert K, Neumann T, Wang J, Jonas U, Knoll W, Ottleben H.

Langmuir. 2007 Mar 13;23(6):3478-84. Epub 2007 Feb 2.

PMID:
17269810
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