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Status and performance of the Gemini Planet Imager adaptive optics system

机译:双子座行星成像仪自适应光学系统的现状和性能

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The Gemini Planet Imager is a high-contrast near-infrared instrument specifically designed to image exoplanets and circumstellar disks over a narrow field of view. We use science data and AO telemetry taken during the first 1.5 yr of the GPI Exoplanet Survey to quantify the performance of the AO system. In a typical 60 sec H-band exposure, GPI achieves a 5σ raw contrast of 10~(-4) at 0.4"; typical final 5σ contrasts for full 1 hr sequences are more than 10 times better than raw contrasts. We find that contrast is limited by bandwidth wavefront error over much of the PSF. Preliminary exploratory factor analysis can explain 60-70% of the variance in raw contrasts with combinations of seeing and wavefront error metrics. We also examine the effect of higher loop gains on contrast by comparing wavefront error maps reconstructed from AO telemetry to concurrent IFS images. These results point to several ways that GPI performance could be improved in software or hardware.
机译:双子座行星成像仪是一种高对比度的近红外仪器,专门用于在狭窄的视野内成像系外行星和星际盘。我们使用在GPI系外行星调查的前1.5年中获取的科学数据和AO遥测来量化AO系统的性能。在典型的60秒H波段曝光中,GPI在0.4“时达到5σ的原始对比度为10〜(-4);完整1小时序列的典型最终5σ对比度比原始对比度好10倍以上。我们发现,对比度初步的探索性因素分析可以通过结合观测和波前误差度量来解释原始对比度中60-70%的方差,而初步探索性因子分析可以解释原始对比中60-70%的方差,我们还通过比较来检验较高环路增益对对比度的影响从AO遥测重构到并发IFS图像的波前误差图,这些结果表明可以通过软件或硬件来改善GPI性能的几种方式。

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