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Apodizing holographic gratings for the modal control of semiconductor lasers

机译:切趾全息光栅用于半导体激光器的模式控制

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We first present the fabrication technique of apodizing holographic gratings. Gratings with a spatially variable reflectivity profile were obtained by the interference of two Gaussian beams on a glass plate covered with a photoresist. When the exposure time was short enough to avoid saturation of the photoresist, gratings with a quasi-Gaussian reflectivity profile for the beam reflected in the -1 order were produced; the reflectivity at the center could be as high as 71%, and the half-width of the reflectivity profile at the e(-1) position could be as small as 180 mu m. Apodizing gratings were used as the end mirror of the external cavity of a broad-area semiconductor laser. Single longitudinal- and lateral-mode operation was observed over the full range of allowed injection currents. (C) 1997 Optical Society of America.
机译:我们首先介绍切趾全息光栅的制造技术。通过在覆盖有光致抗蚀剂的玻璃板上的两个高斯光束的干涉,获得具有空间可变反射率轮廓的光栅。当曝光时间短到足以避免光致抗蚀剂饱和时,就产生了具有准高斯反射率轮廓的-1级反射光束的光栅。中心的反射率可能高达71%,e(-1)位置的反射率轮廓的半角宽度可能小至180μm。切趾光栅用作广域半导体激光器外腔的端面镜。在允许的注入电流的整个范围内观察到单纵模和横模运行。 (C)1997年美国眼镜学会。

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