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Mode aberration analysis of positive-branch confocal unstableresonators by use of wavefront reconstruction

机译:用波前重建模拟积极分支共聚焦unstablEneresonator的模式像差分析

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The effect of intracavity aberrated perturbation on output mode structure properties of passive confocal unstable resonator is been experimentally researched by adopting Hartmann-Shack wavefront sensor and Zernike modal wavefront reconstruction on the basis of numerical simulation. Results show that intracavity perturbation such as mirror tilt and misadjustment in the vertical axis notablely affects outcoupled mode properties, and will also increase some high-order aberrations of beam phase properties. However, low-order Zernike tilt aberration is the main component when phase-tilted perturbation is introduced into the resonator. Defocus (Z_3), astigmatism (Z_4 or Z_5) and coma aberration (Z_6or Z_7) will all be brought, and also such high-order aberration included in wavefront will directly degrade output beam quality for larger Fresnel number unstable resonators. When wavefront corrector is used for intracavity aberrated compensation, low-order aberration should be considered preferentially.
机译:通过基于数值模拟采用Hartmann-Shack波前传感器和Zernike模态波前重建,通过采用Hartmann-Shack波前传感器和Zernike模态波前重建来研究无源共聚焦不稳定谐振器输出模式结构的影响。结果表明,垂直轴中的镜子倾斜和误解如镜子倾斜和误解的腔内扰动受到明显影响突出耦合模式属性,并且还将增加一些高阶的光束相位性能的像差。然而,当将相位倾斜的扰动引入谐振器时,低阶Zernike倾斜像差是主要部件。散焦(Z_3),散光(Z_4或Z_5)和彗差(Z_6OR Z_7)都将被带到,并且还包括在波前包括的高阶像差将直接降低较大的菲涅耳号不稳定谐振器的输出光束质量。当波前校正器用于腔内变差补偿时,应优先考虑低阶像差。

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