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通过采用包含相变材料的等离子体纳米天线实现近红外光谱范围内的可调谐光开关。

Tunable optical switching in the near-infrared spectral regime by employing plasmonic nanoantennas containing phase change materials.

作者信息

Savaliya Priten B, Thomas Arun, Dua Rishi, Dhawan Anuj

出版信息

Opt Express. 2017 Oct 2;25(20):23755-23772. doi: 10.1364/OE.25.023755.

Abstract

We propose the design of switchable plasmonic nanoantennas (SPNs) that can be employed for optical switching in the near-infrared regime. The proposed SPNs consist of nanoantenna structures made up of a plasmonic metal (gold) such that these nanoantennas are filled with a switchable material (vanadium dioxide). We compare the results of these SPNs with inverted SPN structures that consist of gold nanoantenna structures surrounded by a layer of vanadium dioxide (VO) on their outer surface. These nanoantennas demonstrate switching of electric-field intensity enhancement (EFIE) between two states (On and Off states), which can be induced thermally, optically or electrically. The On and Off states of the nanoantennas correspond to the metallic and semiconductor states, respectively of the VO film inside or around the nanoantennas, as the VO film exhibits phase transition from its semiconductor state to the metallic state upon application of thermal, optical, or electrical energy. We employ finite-difference time-domain (FDTD) simulations to demonstrate switching in the EFIE for four different SPN geometries - nanorod-dipole, bowtie, planar trapezoidal toothed log-periodic, and rod-disk - and compare their near-field distributions for the On and Off states of the SPNs. We also demonstrate that the resonance wavelength of the EFIE spectra gets substantially modified when these SPNs switch between the two states.

摘要

我们提出了一种可切换的等离子体纳米天线(SPN)的设计方案,该方案可用于近红外波段的光开关。所提出的SPN由等离子体金属(金)制成的纳米天线结构组成,这些纳米天线填充有一种可切换材料(二氧化钒)。我们将这些SPN的结果与倒置SPN结构的结果进行比较,倒置SPN结构由金纳米天线结构组成,其外表面包围着一层二氧化钒(VO)。这些纳米天线展示了电场强度增强(EFIE)在两种状态(开态和关态)之间的切换,这可以通过热、光或电的方式诱导。纳米天线的开态和关态分别对应于纳米天线内部或周围VO薄膜的金属态和半导体态,因为VO薄膜在施加热、光或电能时会从其半导体态转变为金属态。我们采用时域有限差分(FDTD)模拟来演示四种不同SPN几何结构(纳米棒偶极子、蝴蝶结、平面梯形齿对数周期和棒盘)在EFIE中的切换,并比较它们在SPN开态和关态下的近场分布。我们还证明,当这些SPN在两种状态之间切换时,EFIE光谱的共振波长会发生显著变化。

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