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Similar articles for PubMed (Select 20160811)

1.

Adiabatic nanofocusing of channel plasmon polaritons.

Bozhevolnyi SI, Nerkararyan KV.

Opt Lett. 2010 Feb 15;35(4):541-3. doi: 10.1364/OL.35.000541.

PMID:
20160811
2.

Nanofocusing with channel plasmon polaritons.

Volkov VS, Bozhevolnyi SI, Rodrigo SG, Martín-Moreno L, García-Vidal FJ, Devaux E, Ebbsen TW.

Nano Lett. 2009 Mar;9(3):1278-82. doi: 10.1021/nl900268v.

PMID:
19220058
3.

Analytic description of channel plasmon polaritons.

Bozhevolnyi SI, Nerkararyan KV.

Opt Lett. 2009 Jul 1;34(13):2039-41.

PMID:
19571992
4.

Compact gradual bends for channel plasmon polaritons.

Volkov VS, Bozhevolnyi SI, Devaux E, Ebbesen TW.

Opt Express. 2006 May 15;14(10):4494-503.

PMID:
19516603
5.

Effective-index modeling of channel plasmon polaritons.

Bozhevolnyi SI.

Opt Express. 2006 Oct 2;14(20):9467-76.

PMID:
19529333
6.

Wavelength selective nanophotonic components utilizing channel plasmon polaritons.

Volkov VS, Bozhevolnyi SI, Devaux E, Laluet JY, Ebbesen TW.

Nano Lett. 2007 Apr;7(4):880-4. Epub 2007 Mar 13.

PMID:
17352507
7.

Resonant plasmon nanofocusing by closed tapered gaps.

Søndergaard T, Bozhevolnyi SI, Beermann J, Novikov SM, Devaux E, Ebbesen TW.

Nano Lett. 2010 Jan;10(1):291-5. doi: 10.1021/nl903563e.

PMID:
20028028
8.

Channel plasmon polaritons guided by graded gaps: closed-form solutions.

Bozhevolnyi SI, Nerkararyan KV.

Opt Express. 2009 Jun 8;17(12):10327-34.

PMID:
19506686
9.

Channel plasmon-polaritons: modal shape, dispersion, and losses.

Moreno E, Garcia-Vidal FJ, Rodrigo SG, Martin-Moreno L, Bozhevolnyi SI.

Opt Lett. 2006 Dec 1;31(23):3447-9.

PMID:
17099745
10.

Long-range channel plasmon polaritons in thin metal film V-grooves.

Lee S, Kim S.

Opt Express. 2011 May 9;19(10):9836-47. doi: 10.1364/OE.19.009836.

PMID:
21643240
11.

Channel plasmon subwavelength waveguide components including interferometers and ring resonators.

Bozhevolnyi SI, Volkov VS, Devaux E, Laluet JY, Ebbesen TW.

Nature. 2006 Mar 23;440(7083):508-11.

PMID:
16554814
12.

Dispersion characteristics of channel plasmon polariton waveguides with step-trench-type grooves.

Lee IM, Jung J, Park J, Kim H, Lee B.

Opt Express. 2007 Dec 10;15(25):16596-603.

PMID:
19550948
13.

How grooves reflect and confine surfaceplasmon polaritons.

Kuttge M, García de Abajo FJ, Polman A.

Opt Express. 2009 Jun 8;17(12):10385-92.

PMID:
19506693
14.

Nanofocusing of surface plasmon polaritons by a pyramidal structure on an aperture.

Tanaka K, Katayama K, Tanaka M.

Opt Express. 2010 Jan 18;18(2):787-98. doi: 10.1364/OE.18.000787.

PMID:
20173901
15.

Wave front adaptation using a deformable mirror for adiabatic nanofocusing along an ultrasharp gold taper.

Schmidt S, Engelke P, Piglosiewicz B, Esmann M, Becker SF, Yoo K, Park N, Lienau C, Groß P.

Opt Express. 2013 Nov 4;21(22):26564-77. doi: 10.1364/OE.21.026564.

PMID:
24216878
16.

Channel plasmon-polariton guiding by subwavelength metal grooves.

Bozhevolnyi SI, Volkov VS, Devaux E, Ebbesen TW.

Phys Rev Lett. 2005 Jul 22;95(4):046802. Epub 2005 Jul 22.

PMID:
16090831
17.

Adiabatic nanofocusing on ultrasmooth single-crystalline gold tapers creates a 10-nm-sized light source with few-cycle time resolution.

Schmidt S, Piglosiewicz B, Sadiq D, Shirdel J, Lee JS, Vasa P, Park N, Kim DS, Lienau C.

ACS Nano. 2012 Jul 24;6(7):6040-8. doi: 10.1021/nn301121h. Epub 2012 Jun 15.

PMID:
22681506
18.

Channel and wedge plasmon modes of metallic V-grooves with finite metal thickness.

Dintinger J, Martin OJ.

Opt Express. 2009 Feb 16;17(4):2364-74.

PMID:
19219140
19.

SERS enhancements via periodic arrays of gold nanoparticles on silver film structures.

Montgomery JM, Imre A, Welp U, Vlasko-Vlasov V, Gray SK.

Opt Express. 2009 May 11;17(10):8669-75.

PMID:
19434200
20.

Demonstration of nanofocusing by the use of plasmonic lens illuminated with radially polarized light.

Lerman GM, Yanai A, Levy U.

Nano Lett. 2009 May;9(5):2139-43. doi: 10.1021/nl900694r.

PMID:
19391611
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