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Focusing Properties of the Visible Light Wave through Plasmonic Lenses with Subwavelength Chirped Slits

机译:通过具有子波长啁啾狭缝的等离子体透镜的可见光波的聚焦性能

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Focusing properties of a new kind of plasmonic lenses are investigated in the visible wavelength range through a subwavelength metallic chirped slit arrays which have the same depth but chirped widths. The chirped widths of slits are like a piece-wise-linear distribution which will be approximated by linearly increasing the width of a subwavelength feature and can build up a required phase front for focusing. We analyzed the focusing characteristics of different metallic lenses (silver and gold, respectively) with chirped widths that are obtained by generalizing the relevant phase delay for TE- and TM-polarized incident waves, for different f-numbers of lenses and for different material thickness, respectively. Meanwhile, the comparison of the metallic and dielectric lenses is also presented. The results of calculations show that, the metallic lenses are more sensitive to the polarization of incidence wave than that of dielectric lenses, and can get narrower full-width half-maximum (FWHM) beam width than that of dielectric lenses for TM-polarized incident waves, respectively. No matter which f-number we choose, the FWHM of dielectric lenses are higher than the plasmonic lenses, and the plasmonic lenses can get a higher focal resolution than dielectric lenses do. This kind of plasmonic lenses should have a good potential for applications in photonic and plasmonic integrated devices, sensing, and nano-optical manipulations, etc.
机译:通过具有相同深度但啁啾宽度的亚波长金属啁啾狭缝阵列,在可见波长范围内研究了新种类的等离子体透镜的聚焦特性。狭缝的啁啾宽度就像一条直线线性分布,其将通过线性增加亚波长特征的宽度来近似,并且可以积聚所需的相位前面进行聚焦。我们分析了不同金属镜片(银色和金)的聚焦特性,通过通过概括了Te-and Tm偏振的入射波来实现了啁啾宽度,用于不同的镜片和不同的材料厚度, 分别。同时,还呈现了金属和介电镜片的比较。计算结果表明,金属镜片对入射波的极化比介电透镜的极化更敏感,并且可以获得比TM极化事件的介电镜片更窄的全宽半最大(FWHM)光束宽度波浪分别。无论我们选择哪个f数字,介电镜片的FWHM都高于等离子体透镜,并且等离子体透镜可以获得比介电镜片更高的焦点分辨率。这种等离子体透镜应该具有良好的光子和等离子体集成装置的应用,感测和纳米光学操作等。

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