利用激光刻氢载种子模板热制备具有纳米级分辨率的高稳定玻璃周期性变化

J. Canning, S. Bandyopadhyay, M. Stevenson, P. Biswas, J. Fenton, R. Chakraborty, M. Åslund
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引用次数: 2

摘要

采用紫外激光种子布拉格光栅,在900℃的光纤内部进行体宏观热处理,制备出了最大光栅强度超过(40-50)dB的强再生光栅。在1000到1100℃之间进一步退火,可以得到稳定的光栅,强度约为18 dB。在监测的4小时内,在1100摄氏度的温度下,这种材料不会进一步退化。为了确定这一过程的潜在分辨率,报道了两个再生的复合轮廓,种子和加工结构之间没有相位差。这为使用热处理和种子模板的纳米材料工程开辟了道路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Thermal preparation of highly stable glass periodic changes with nano-scale resolution using a laser-inscribed hydrogen loaded seed template
Strong regenerated gratings with a maximum grating strength exceeding (40-50) dB are fabricated inside an optical fibre by bulk macro thermal processing ~900degC using a UV-laser seeded Bragg grating. Further annealing between 1000 and 1100degC leads to a stabilised grating ~18 dB in strength. This suffers no further degradation at 1100degC for the period monitored, over 4 hrs. To determine the potential resolution of this process, two regenerated complex profiles with no phase difference between seed and processed structures is reported. This opens the way for nano-engineering of materials using thermal processing and seed templates.
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