Smelser C W, Grobnic D, Mihailov S J
Communications Research Centre Canada, 3701 Carling Avenue, P.O. Box 11490, Station H, Ottawa, Ontario K2H 8S2, Canada.
Opt Lett. 2004 Aug 1;29(15):1730-2. doi: 10.1364/ol.29.001730.
Fiber Bragg gratings were fabricated in all-silica core fiber by focusing 125-fs 800-nm pulses with an 80-mm lens through a phase mask with 4.28-microm pitch onto a fiber sample. When the phase-mask-fiber separation was 5 mm the observed structure was clearly the result of two-beam interference between the +/- 1 orders. The elimination of the remaining 9 orders is a consequence of the walk-off experienced by the mask orders and the short duration of the femtosecond pulse. This effect is unique to the fabrication of Bragg gratings with femtosecond sources and would not be observed with a longer pulse duration or incoherent UV sources.
通过使用一个80毫米的透镜将125飞秒、800纳米的脉冲聚焦,使其透过一个间距为4.28微米的相位掩膜,照射到光纤样品上,从而在全石英芯光纤中制作出光纤布拉格光栅。当相位掩膜与光纤的间距为5毫米时,观察到的结构显然是±1级之间两束光干涉的结果。其余9级的消除是由于掩膜级所经历的走离效应以及飞秒脉冲的短持续时间。这种效应是使用飞秒光源制作布拉格光栅所特有的,使用更长的脉冲持续时间或非相干紫外光源时不会观察到这种效应。