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PUBMED FOR HANDHELDS

Journal Abstract Search


187 related items for PubMed ID: 29041401

  • 1. Tailoring optical pulling force on gain coated nanoparticles with nonlocal effective medium theory.
    Bian X, Gao DL, Gao L.
    Opt Express; 2017 Oct 02; 25(20):24566-24578. PubMed ID: 29041401
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  • 5. Tailoring optical properties of surface charged dielectric nanoparticles based on an effective medium theory.
    Wang N, Liu S, Lin Z.
    Opt Express; 2013 Aug 26; 21(17):20387-93. PubMed ID: 24105583
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  • 6. Broadened region for robust optical bistability in a nonlocal core and Kerr shell nanoparticle.
    Huang Y, Gao L.
    Opt Lett; 2018 Jun 15; 43(12):2836-2839. PubMed ID: 29905702
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  • 8. Tunable optical forces enhanced by plasmonic modes hybridization in optical trapping of gold nanorods with plasmonic nanocavity.
    Huang WH, Li SF, Xu HT, Xiang ZX, Long YB, Deng HD.
    Opt Express; 2018 Mar 05; 26(5):6202-6213. PubMed ID: 29529812
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  • 10. Optical pulling and pushing forces exerted on silicon nanospheres with strong coherent interaction between electric and magnetic resonances.
    Liu H, Panmai M, Peng Y, Lan S.
    Opt Express; 2017 May 29; 25(11):12357-12371. PubMed ID: 28786592
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  • 11. Fano resonances in plasmonic nanoparticle aggregates.
    Mirin NA, Bao K, Nordlander P.
    J Phys Chem A; 2009 Apr 23; 113(16):4028-34. PubMed ID: 19371111
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  • 19. Fano resonant Ge2Sb2Te5 nanoparticles realize switchable lateral optical force.
    Cao T, Mao L, Gao D, Ding W, Qiu CW.
    Nanoscale; 2016 Mar 14; 8(10):5657-66. PubMed ID: 26898233
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  • 20. Low-Loss Plasmonic Dielectric Nanoresonators.
    Yang Y, Miller OD, Christensen T, Joannopoulos JD, Soljačić M.
    Nano Lett; 2017 May 10; 17(5):3238-3245. PubMed ID: 28441499
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