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Femtosecond Laser Fabrication of Metamaterials for High Frequency Microwave Devices

机译:飞秒激光加工高频微波超材料

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The laser etching technique is used for configuration of micro-structures. Films of few- hundreds nm of gold deposited on glass or silicon are precisely processed by tightly focusing a femtosecond laser with 150fs pulse duration, 775nm wavelength, and energy of tens of nJ. The laser fluence is hold just above the ablation threshold. Thus, the evaporated film leaves behind structures with thin lateral size of about 1|ìm. Using this technique, the fabrication of micro-structures is demonstrated. The periodic structures are designed to behave as a left handed metamaterial in the GHz range. The fabricated metamaterials have applications for antenna, filters, couplers in the high frequency bands of microwave spectral range.
机译:激光蚀刻技术用于构造微结构。通过以150fs的脉冲持续时间,775nm的波长和数十nJ的能量紧紧聚焦飞秒激光,可以精确地处理沉积在玻璃或硅上的几百纳米金膜。激光能量密度保持在刚好高于消融阈值的水平。因此,蒸发后的薄膜会留下横向尺寸约为1μm的薄结构。使用该技术,证明了微结构的制造。周期性结构被设计为在GHz范围内表现为左手超材料。所制造的超材料可用于微波频谱范围的高频带中的天线,滤波器,耦合器。

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