146
Views
11
CrossRef citations to date
0
Altmetric
Articles

The Electric Field Enhancement and Resonance in Optical Antenna Composed of AU Nanoparicles

, &
Pages 534-547 | Published online: 03 Apr 2012

References

  • Muhlschlegel , P. , Eisler , H. J. Martin , O. J. F. 2005 . Resonant optical antennas . Science , 308 ( No. 5728 ) : 1607 – 1609 .
  • Krenn , J. R. , Dereux , A. Weeber , J. C. 1999 . Squeezing the optical near-field zone by plasmon coupling of metallic nanoparticles . Phys. Rev. Lett. , 82 ( No. 12 ) : 2590
  • Aizpurua , J. , Hanarp , P. Sutherland , D. S. 2003 . Optical properties of gold nanorings . Phys. Rev. Lett. , 90 ( No. 5 ) : 057401
  • Nehl , C. L. , Liao , H. and Hafner , J. H. 2006 . Optical properties of star-shaped gold nanoparticles . Nano Lett. , 6 ( No. 4 ) : 683 – 688 .
  • Fischer , H. and Martin , O. J. F. 2008 . Engineering the optical response of plasmonic nanoantennas . Opt. Exp. , 16 ( No. 12 ) : 9144 – 9154 .
  • Kong , F. M. , Li , K. u , B. I. W . 2007 . Propagation properties of the SPP modes in nanoscale narrow metallic gap, channel, and hole geometries . Progress In Electromagnetics Research , : 449 – 466 . PIER 76
  • Kong , F. M. , Li , K. Huang , H. 2008 . Analysis of the surface magnetoplasmon modes in the semiconductor slit waveguide at terahertz frequencies . Progress In Electromagnetics Research , : 257 – 270 . PIER 82
  • Kong , F. M. , Wu , B. I. Chen , H. 2007 . Surface plasmon mode analysis of nanoscale metallic rectangular waveguide . Opt. Exp. , 15 ( No. 19 ) : 12331 – 12337 .
  • Suyama , T. and Okuno , Y. 2007 . Enhancement of TM-TE mode conversion caused by excitation of surface plasmons on a metal grating and its application for refractive index measurement . Progress In Electromagnetics Research , : 91 – 103 . PIER 72
  • Brovenko , A. , Melezhik , P. N. Poyedinchuk , A. Y. 2006 . Surface resonances of metal stripe grating on the plane boundary of metamaterial . Progress In Electromagnetics Research , : 209 – 222 . PIER 63
  • Ozbay , E. 2006 . Plasmonics: Merging photonics and electronics at nanoscale dimensions . Science , 311 ( No. 5758 ) : 189 – 193 .
  • Crozier , K. B. , Sundaramurthy , A. Kino , G. S. 2003 . Optical antennas: Resonators for local field enhancement . J. Appl. Phys. , 94 ( No. 7 ) : 4632 – 4642 .
  • Arvind , S. , Crozier , K. B. Kino , G. S. 2005 . Field enhancement and gap-dependent resonance in a system of two opposing tipto-tip Au nanotriangles . Phys. Rev. B , 72 ( No. 16 ) : 165409
  • Jin , E. X. and Xu , X. 2006 . Enhanced optical near field from a bowtie aperture . Appl. Phys. Lett. , 88 ( No. 15 ) : 153110 – 3 .
  • John , T. K. , Erik , J. S. and Xie , X. S. 2002 . Design of near-field optical probes with optimal field enhancement by finite difference time domain electromagnetic simulation . J. Chem. Phys. , 116 ( No. 24 ) : 10895 – 10901 .
  • Taminiau , T. H. , Moerland , R. J. Segerink , F. B. 2007 . λ/4 resonance of an optical monopole antenna probed by single molecule fluorescence . Nano Lett. , 7 ( No. 1 ) : 28 – 33 .
  • Li , J. , Salandrino , A. and Engheta , N. 2007 . Shaping light beams in the nanometer scale: A Yagi-Uda nanoantenna in the optical domain . Phys. Rev. B , 76 ( No. 24 ) : 245403
  • Nanfang , Y. , Ertugrul , C. Laurent , D. 2007 . Plasmonic quantum cascade laser antenna . Appl. Phys. Lett. , 91 ( No. 17 ) : 173113
  • Brehm , M. , Taubner , T. Hillenbrand , R. 2006 . Infrared spectroscopic mapping of single nanoparticles and viruses at nanoscale resolution . Nano Lett. , 6 ( No. 7 ) : 1307 – 1310 .
  • Yee , K. 1966 . Numerical solution of inital boundary value problems involving Maxwell’s equations in isotropic media . IEEE Trans. Antennas Propagat. , 14 ( No. 3 ) : 302 – 307 .
  • Taflove , A. and Hagness , S. C. 2000 . Computational Electrodynamics: The Finite-difference Time-domain Method , 2nd edition , Boston : Artech House .
  • Lei , J. Z. , Liang , C. H. Ding , W. 2008 . Emc analysis of antennas mounted on electrically large platforms with parallel FDTD method . Progress In Electromagnetics Research , : 205 – 220 . PIER 84
  • Hu , X. J. and Ge , D. B. 2008 . Study on conformal FDTD for electromagnetic scattering by targets with thin coating . Progress In Electromagnetics Research , : 305 – 319 . PIER 79
  • Afrooz , K. , Abdipour , A. Tavakoli , A. 2007 . Time domain analysis of active transmission line using FDTD technique (application to microwave/mm-wave transistors) . Progress In Electromagnetics Research , : 309 – 328 . PIER 77
  • D’Orazio , A. , Palo , V. D. Sario , M. D. 2003 . Finite difference time domain modeling of light amplification in active photonic band gap structures . Progress In Electromagnetics Research , : 299 – 339 . PIER 39
  • Kuzu , L. , Demir , V. Elsherbeni , A. Z. 2007 . Electromagnetic scattering from arbitrarily shaped chiral objects using the finite difference frequency domain method . Progress In Electromagnetics Research , : 1 – 24 . PIER 67
  • Chu , S. T. and Chaudhuri , S. K. 1995 . Finite-difference timedomain method for optical waveguide analysis . Progress In Electromagnetics Research , : 255 – 300 . PIER 11
  • Weber , M. J. 2003 . Handbook of Optical Materials , New York : CRC Press .
  • Berenger , J. P. 1996 . Three-dimensional perfectly matched layer for the absorption of electromagnetic waves . J. Comput. Phys. , 127 ( No. 2 ) : 363 – 379 .
  • Kong , J. A. 1986 . Electromagnetic Wave Theory , New York : Wiley & Sons .

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.