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of an electron density wave propagating along a metal/dielectric interface. The charge density oscillations and associated electromagnetic fields are called surface plasmon-polariton waves. The exponential dependence of the electromagnetic field intensity on the distance away from the interface is
38: 311: 744: 449: 78: 433: 46: 736: 698: 653: 608: 563: 437: 429: 861:== {{int:filedesc}} == {{Information |Description={{en|1= of an electron density wave propagating along a metal/dielectric interface. The charge density oscillations 740: 525: 445: 441: 131:
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shown on the right. These waves can be excited very efficiently with light in the visible range of the electromagnetic spectrum.
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Sub-diffraction limit optical waveguides based on metallic nanoparticle arrays and nanowires.
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Presently, metallic nanostructures are used to fabricate/analyze:
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Plasmon excitations on thin films with ordered arrays of holes.
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Ultra-sensitive optical sensors for biological applications.
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File:Electron density wave - plasmon excitations.png
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