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Nanoscale gradient index media fabrication for extreme control and tunability of optical wave propagation

机译:纳米级梯度折射率介质制造,用于光波传播的极端控制和可调性

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Gradient Index Media have multiple applications for controlling the wave propagation and harvesting its received energy or processing its embedded data. A nanofabrication process was developed to produce a Luneburg lens on silicon, to operate in the optical regime, with feature sizes smaller than 100nm. The focused energy of the Luneburg lens is compared with lenses of non-spatially-varying index as well as a linear spatial variation, and its enhanced focusing is clearly demonstrated. In addition, a mechanism of thermal tunability of such devices is proposed and is supported by our results.
机译:梯度索引介质具有多种应用程序,可用于控制波的传播,获取其接收的能量或处理其嵌入的数据。开发了纳米制造工艺,以在硅上生产Luneburg透镜,以在光学范围内工作,其特征尺寸小于100nm。将Luneburg透镜的聚焦能量与非空间变化指数和线性空间变化的透镜进行比较,并清楚地展示了其增强的聚焦能力。另外,提出了这种器件的热可调性机制,并得到我们的结果的支持。

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