the result directly proves that this method is very helpful to design the omnidirectional reflector with high band width 證明這種方法是有效的,可望用于實(shí)際的設(shè)計(jì)制作和應(yīng)用。
based on this method, the omnidirectional reflector with large band width is fabricated by using conventional coating technology 在此基礎(chǔ)上,利用傳統(tǒng)的薄膜制作工藝,在實(shí)驗(yàn)上對(duì)這種方法進(jìn)行了論證。
at the same time, this method greatly decreases the demand for the fabrication technique, which makes the omnidirectional reflector with high band width available 同時(shí)這種方法極大地降低了工藝條件,易于實(shí)際制作。它還極大地降低了對(duì)材料的要求。
this method greatly improves the band width of omndirectional band gap, which makes the omnidirectional reflector for the whole visible region possible 不僅極大地提高了一維光子晶體的全方位反射帶,使得制作覆蓋整個(gè)可見光波段的全方位反射器成為可能。
based on this omnidirectional reflector, the new generation fibre, called omni-guide, is developed . the research about omnidirectional reflector will be greatly helpful for this omni-guide fibre 它的發(fā)展直接促使了基于一維光子晶體的光子晶體光纖的誕生,對(duì)于實(shí)現(xiàn)基于一維光子晶體的光纖具有重要的意義。