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Tuning of external-cavity semiconductor lasers with chirped diffraction gratings

机译:用chi衍射光栅调谐外腔半导体激光器

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摘要

We present a novel scheme of tunable semiconductor laser based on the use of a chirped grating in an external cavity. The chirped grating is fabricated using a simple holographic technique: two Gaussian beams having wavefronts with different radii of curvature are brought to interfere on a photoresist layer. The tuning properties of chirped gratings have been investigated with semiconductor lasers operated with an external cavity. With this type of grating positioned in Littrow configuration, the wavelength selection can be done by translating the grating without any need to rotate it. This cavity configuration provides a tunable output beam with an angle of propagation that is independent of the wavelength. The translation of chirped gratings was shown to tune a visible diode laser and an infrared diode laser over the same spectral band as the conventional tuning scheme where an unchirped grating is rotated.
机译:我们提出了一种基于在外腔中使用grating光栅的可调谐半导体激光器的新方案。 a光栅是使用简单的全息技术制造的:使具有不同曲率半径的波前的两个高斯光束干涉光致抗蚀剂层。 with光栅的调谐特性已通过在外部腔中工作的半导体激光器进行了研究。通过将这种类型的光栅设置为Littrow配置,可以通过平移光栅来进行波长选择,而无需旋转光栅。这种腔配置可提供可调的输出光束,其传播角度与波长无关。示出了光栅的平移以在与未调谐光栅旋转的常规调谐方案相同的光谱带上调谐可见二极管激光器和红外二极管激光器。

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