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Spectrometer slit-power-coupling calculations for natural and laser guide-star adaptive optics

机译:天然和激光导星自适应光学系统的光谱仪狭缝功率耦合计算

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摘要

We use numerical calculations to examine the relation between adaptive optics (AO) turbulence compensation and power coupled through a spectrometer slit for both laser and natural guide-star AO systems. The AO system and observing parameters used are relevant to the Gemini-North 8-m telescope. For this study, we separate residual tilt from residual higher-order aberrations to isolate their relative effects under a variety of operating conditions. Our results demonstrate that slit-coupled intensity is not uniquely determined by system Strehl alone; we show that this is due to the differing effects of higher-order and tilt aberrations on the shape of the compensated point-spread function. For the Gemini spectrometer and AO system, the wider point-spread function halo associated with an added residual higher-order aberration reduces slit-coupled intensity more rapidly than a broad point-spread function core induced by residual tilt. (C) 1998 Optical Society of America. [References: 14]
机译:我们使用数值计算来检查自适应光学(AO)湍流补偿与通过光谱仪狭缝耦合的功率对激光和自然制导AO系统的关系。所使用的AO系统和观测参数与Gemini-North 8-m望远镜有关。对于本研究,我们将残余倾斜与残余高阶像差分开,以隔离它们在各种工作条件下的相对影响。我们的结果表明,狭缝耦合强度不是仅由系统Strehl唯一确定的。我们证明这是由于高阶像差和倾斜像差对补偿点扩展函数的形状的不同影响。对于Gemini光谱仪和AO系统,较宽的点扩展函数光晕与增加的残余高阶像差相关联,比由残留倾斜引起的宽点扩展函数核心更快地降低了缝耦合强度。 (C)1998年美国眼镜学会。 [参考:14]

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