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Phase-controlled propagation of surface plasmons

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摘要 Directional emission of electromagnetic radiation can be achieved using a properly shaped single antenna or a phased array of individual antennas.Control of the individual phases within an array enables scanning or other manipulations of the emission,and it is this property of phased arrays that makes them attractive in modern systems.Likewise,the propagation of surface plasmons at the interface between metal films and dielectric materials can be determined by shaping the individual surface nanostructures or via the phase control of individual elements in an array of such structures.Here,we demonstrate control of the propagation of surface plasmons within a linear array of nanostructures.The generic situation of plasmonic surface propagation that is different on both sides of a metal film provides a unique opportunity for such control:plasmons propagating on the slower side feed into the side with the faster propagation,creating a phased array of interfering antennas and thus controlling the directionality of the wake fields.We further show that by shaping the individual nanoantennas,we can generate an asymmetric propagation geometry.
出处 《Light(Science & Applications)》 SCIE EI CAS CSCD 2017年第1期466-474,共9页 光(科学与应用)(英文版)
基金 supported by the Israel Science Foundation grant no.1242/12 by the ICORE program by an FTA grant from the Israel National Nano Initiative by the Minerva Foundation.
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