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Analytical beam shaping with application to laser-diode arrays

机译:应用于激光二极管阵列的分析光束整形

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In contrast to numerical methods for beam shaping, analytical beam shaping consists of two steps: first, finding a purely geometrical distortion between the input plane and the output plane redistributing the intensity of the incoming wave front; and, second, computing a phase-only element realizing this coordinate transform. For the latter the method of stationary phase may be applied. The known classes of possible analytical wave transformation are extended to comprise separable and isotropic super-Gaussian-to-super-Gaussian conversion as well as transformation of Gaussian arrays to super-Gaussian distributions, and vice versa. The resulting optical phase elements contain no spiral phase dislocation and may thus be realized as refractive or diffractive elements. In addition, the outgoing wave front does not contain spiral phase dislocations. # 1997 Optical Society of America [S0740-3232(97)00507-3]
机译:与光束整形的数值方法相比,分析光束整形由两个步骤组成:首先,在输入平面和输出平面之间找到纯几何变形,并将输出平面重新分配进入波前的强度; 并且,第二,计算实现该坐标变换的唯一的元素。 对于后者,可以应用静止阶段的方法。 已知的可能分析波转换的类别延伸以包括可分离和各向同性的超高斯 - 超高斯转换以及高斯阵列转换为超高斯分布,反之亦然。 所得到的光学相结数不含螺旋相位脱位,因此可以实现为折射或衍射元件。 此外,输出波前面不含螺旋相位错。 #1997年光学学会[S0740-3232(97)00507-3]

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