首页> 外文会议>Conference on Device and Process Technologies for Microelectronics, MEMS, and Photonics; 20071205-07; Canberra(AU) >Fabrication of Sub-Wavelength Periodic Structures upon High-Refractive-Index Glasses by Precision Glass Molding
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Fabrication of Sub-Wavelength Periodic Structures upon High-Refractive-Index Glasses by Precision Glass Molding

机译:精密玻璃模压法在高折射率玻璃上制备亚波长周期结构

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One-dimensional surface-relief gratings were fabricated using a direct imprinting process with a glassy carbon (GC) mold at the softening temperatures of oxide glasses. The maximum grating height attained in this study was 730 nm when the grating period was 500 nm, which could be formed by the pressing at the softening temperature of glass under constant pressure of 0.4 kN/cm~2. A large area glass imprinting was attempted using a GC mold with a periodic patterned area of 6 mm × 6 mm, which has the period of 500 nm and groove depth of 350 nm, respectively. Phase retardation of 0.1 λ. was recognized between TE-polarized and TM-polarized lights at 600 nm wavelength. The measured values were in excellent agreement with those calculated using a rigorous coupled wave analysis.
机译:一维表面浮雕光栅是在玻璃氧化物的软化温度下使用玻璃碳(GC)模具通过直接压印工艺制造的。当光栅周期为500 nm时,本研究获得的最大光栅高度为730 nm,这可以通过在0.4 kN / cm〜2的恒定压力下在玻璃的软化温度下加压来形成。尝试使用GC模具进行大面积玻璃压印,该模具的周期性图案化区域为6 mm×6 mm,其周期分别为500 nm和凹槽深度为350 nm。相位延迟为0.1λ。在波长为600 nm的TE偏振光和TM偏振光之间可以识别出。测量值与使用严格耦合波分析计算得出的值非常一致。

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