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GPI PSF subtraction with TLOCI: the next evolution in exoplanet/disk high-contrast imaging

机译:GPI PSF与Tloci减法:Exoplanet /磁盘高对比度成像中的下一个演变

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To directly image exoplanets and faint circumstellar disks, the noisy stellar halo must be suppressed to a high level. To achieve this feat, the angular differential imaging observing technique and the least-squares Locally Optimized Combination of Images (LOCI) algorithm have now become the standard in single band direct imaging observations and data reduction. With the development and commissioning of new high-order high-contrast adaptive optics equipped with integral field units, the image subtraction algorithm needs to be modified to allow the optimal use of polychromatic images, field-rotated images and archival data. A new algorithm, TLOCI (for Template LOCI), is designed to achieve this task by maximizing a companion signal-to-noise ratio instead of simply minimizing the noise as in the original LOCI algorithm. The TLOCI technique uses an input spectrum and template Point Spread Functions (PSFs, generated from unocculted and unsaturated stellar images) to optimize the reference image least-squares coeffcients to minimize the planet self-subtraction, thus maximizing its throughput per wavelength, while simultaneously providing a maximum suppression of the speckle noise. The new algorithm has been developed using on-sky GPI data and has achieved impressive contrast. This paper presents the TLOCI algorithm, on-sky performance, and will discuss the challenges in recovering the planet spectrum with high fidelity.
机译:为了直接图像外产成分和微弱的星际磁盘,必须抑制嘈杂的恒星光环到高水平。为了实现这一壮举,角差分成像观察技术和最小二乘局部优化的图像(基因座)算法的组合现在已经成为单带直接成像观察和数据减少的标准。随着配备积分场单元的新型高秩序高射朵自适应光学器件的开发和调试,需要修改图像减法算法以允许最佳使用多色图像,现场旋转的图像和档案数据。一种新的算法Tloci(对于模板基因座),旨在通过最大化伴随信噪比来实现这项任务,而不是在原始基因算法中简单地最小化噪声。 TLOCI技术使用输入频谱和模板点扩展功能(从未饱和的恒星图像产生的PSF)来优化参考图像最小二乘系数,以最小化行星自减的速度系数,从而最大化其每个波长的吞吐量,同时提供最大抑制斑点噪声。新算法已经使用天空GPI数据开发,并实现了令人印象深刻的对比度。本文介绍了Tloci算法,天空性能,并将讨论高保真恢复行星谱的挑战。

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