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Azimuthal mode discrimination in radially chirped concentric-circle-grating distributed feedback lasers

机译:径向chi同心圆光栅分布式反馈激光器的方位模态识别

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We report a theoretical investigation analyzing the threshold modes of a concentric-circle-grating (CCG) distributed feedback laser with a radially chirped first-order Bragg grating. A numerical coupled-mode analysis of a chirped CCG laser shows improved azimuthal mode discrimination for chirped gratings with linear, quadratic, and square-root radial dependence. Negatively chirped gratings, in which the grating period decreases with radius, result in improved threshold discrimination between the circularly symmetric fundamental mode and higher order modes; positively chirped gratings, in which the grating period increases with radius, result in decreased threshold for higher order modes in general. Also, the intensity for the fundamental mode at the grating center can be reduced by an order of magnitude using linearly chirped gratings.
机译:我们报告了一项理论研究,分析了径向first一阶布拉格光栅的同心圆光栅(CCG)分布式反馈激光器的阈值模式。 CC CCG激光器的数值耦合模分析表明,线性,二次和平方根径向相关的chi光栅的方位角模式识别度得到了改善。负chi光栅,其中光栅周期随半径减小,导致圆对称基本模和高阶模之间的阈值区分度提高;正chi的光栅,其中光栅周期随半径增加,通常会降低高阶模的阈值。同样,使用线性chi光栅可以将光栅中心处的基本模式的强度降低一个数量级。

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