Search Results - "Schider, G."

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  1. 1

    Optimized surface-enhanced Raman scattering on gold nanoparticle arrays by Félidj, N., Aubard, J., Lévi, G., Krenn, J. R., Hohenau, A., Schider, G., Leitner, A., Aussenegg, F. R.

    Published in Applied physics letters (05-05-2003)
    “…In this letter, we show that tuning the maximum of the surface plasmon resonance of elongated gold nanoparticles to a wavelength, the position of which is…”
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    Journal Article
  2. 2

    Two-dimensional optics with surface plasmon polaritons by Ditlbacher, H., Krenn, J. R., Schider, G., Leitner, A., Aussenegg, F. R.

    Published in Applied physics letters (02-09-2002)
    “…We report the experimental realization of highly efficient optical elements built up from metal nanostructures to manipulate surface plasmon polaritons…”
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  3. 3

    Metal nanoparticle gratings: influence of dipolar particle interaction on the plasmon resonance by Lamprecht, B, Schider, G, Lechner, RT, Ditlbacher, H, Krenn, JR, Leitner, A, Aussenegg, FR

    Published in Physical review letters (15-05-2000)
    “…We probe the influence of grating effects on plasmon excitations in gold nanoparticles arranged in regular two-dimensional patterns. Samples produced by…”
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  4. 4

    Surface plasmon propagation in microscale metal stripes by Lamprecht, B., Krenn, J. R., Schider, G., Ditlbacher, H., Salerno, M., Felidj, N., Leitner, A., Aussenegg, F. R., Weeber, J. C.

    Published in Applied physics letters (02-07-2001)
    “…Addressing the fundamental question of miniaturization of light guiding and routing towards nanoscale optics, we study experimentally surface plasmon…”
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  5. 5
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    Fluorescence imaging of surface plasmon fields by Ditlbacher, H., Krenn, J. R., Felidj, N., Lamprecht, B., Schider, G., Salerno, M., Leitner, A., Aussenegg, F. R.

    Published in Applied physics letters (21-01-2002)
    “…We demonstrate that surface plasmon fields can be imaged in real time by detecting the fluorescence of a molecular film close to the plasmon carrying metal…”
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  7. 7

    Design of multipolar plasmon excitations in silver nanoparticles by Krenn, J. R., Schider, G., Rechberger, W., Lamprecht, B., Leitner, A., Aussenegg, F. R., Weeber, J. C.

    Published in Applied physics letters (20-11-2000)
    “…We report on the experimental observation of multipolar plasmon excitations in lithographically designed elongated silver particles. In contrast to spheres,…”
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  8. 8
  9. 9

    The optical near-field of gold nanoparticle chains by Salerno, M., Krenn, J.R., Hohenau, A., Ditlbacher, H., Schider, G., Leitner, A., Aussenegg, F.R.

    Published in Optics communications (15-04-2005)
    “…We report on scanning near-field optical microscopy of one-dimensional chains of gold nanoparticles which are optically excited at their particle plasmon…”
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  10. 10

    Surface plasmon micro‐ and nano‐optics by Krenn, J. R., Ditlbacher, H., Schider, G., Hohenau, A., Leitner, A., Aussenegg, F. R.

    Published in Journal of microscopy (Oxford) (01-03-2003)
    “…Summary We report the experimental realization of key elements of a two‐dimensional optics based on surface plasmon polaritons (SPPs). Local SPP sources, Bragg…”
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  11. 11

    Optical near-field of multipolar plasmons of rod-shaped gold nanoparticles by Hohenau, A, Krenn, J. R, Schider, G, Ditlbacher, H, Leitner, A, Aussenegg, F. R, Schaich, W. L

    Published in Europhysics letters (01-02-2005)
    “…We report on near-field measurements and calculations of the optical intensity close to rod-shaped gold nanoparticles excited at a multipolar plasmon…”
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  12. 12

    Light field propagation by metal micro‐ and nanostructures by Krenn, J. R., Salerno, M., Felidj, N., Lamprecht, B., Schider, G., Leitner, A., Aussenegg, F. R., Weeber, J. C., Dereux, A., Goudonnet, J. P.

    Published in Journal of microscopy (Oxford) (01-04-2001)
    “…The ability to sustain plasmon oscillations gives rise to unique properties of metal nanostructures, which can be exploited for the controlled manipulation of…”
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  13. 13

    Electrolytic formation of nanoapertures for scanning near-field optical microscopy by Bouhelier, A., Toquant, J., Tamaru, H., Güntherodt, H.-J., Pohl, D. W., Schider, G.

    Published in Applied physics letters (30-07-2001)
    “…Aperture probes for near-field optical microscopy were produced by controlled all solid state electrolysis. Control of both the ionic current and light…”
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