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Gemini Planet Imager Observational Calibrations Ⅶ: On-Sky Polarimetric Performance of the Gemini Planet Imager

机译:双子座行星成像仪观测校准Ⅶ:双子座行星成像仪的空中极化性能

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We present on-sky polarimetric observations with the Gemini Planet Imager (GPI) obtained at straight Cassegrain focus on the Gemini South 8-m telescope. Observations of polarimetric calibrator stars, ranging from nearly un-polarized to strongly polarized, enable determination of the combined telescope and instrumental polarization. We find the conversion of Stokes I to linear and circular instrumental polarization in the instrument frame to be I → (Q_(IP), I_(IP), P_(IP), V_(IP)) = (-0.037 ± 0.010%, +0.4338 ± 0.0075%, 0.4354 ± 0.0075%, -6.64 ± 0.56%). Such precise measurement of instrumental polarization enables ~ 0.1% absolute accuracy in measurements of linear polarization, which together with GPI's high contrast will allow GPI to explore scattered light from circumstellar disk in unprecedented detail, conduct observations of a range of other astronomical bodies, and potentially even study polarized thermal emission from young exoplanets. Observations of unpolarized standard stars also let us quantify how well GPI's differential polarimetry mode can suppress the stellar PSF halo. We show that GPI polarimetry achieves cancellation of unpolarized starlight by factors of 100-200, reaching the photon noise limit for sensitivity to circumstellar scattered light for all but the smallest separations at which the calibration for instrumental polarization currently sets the limit.
机译:我们用双子座南8米望远镜直接在卡塞格林拍摄的双子座行星成像仪(GPI)展示了天空极化观测。极化校准星的观测范围从几乎未极化到强极化,可以确定望远镜和仪器极化的组合。我们发现斯托克斯I在仪器框架中到线性和圆形仪器极化的转换为I→(Q_(IP),I_(IP),P_(IP),V_(IP))=(-0.037±0.010%, +0.4338±0.0075%,0.4354±0.0075%,-6.64±0.56%)。如此精确的仪器极化测量可以使线性极化测量达到约0.1%的绝对准确度,再加上GPI的高对比度,将使GPI能够以前所未有的方式探索来自圆盘的散射光,并对一系列其他天文物体进行观测,并且有可能甚至研究年轻系外行星的极化热辐射。对非极化标准星的观测还使我们能够量化GPI的差分极化模式可以抑制恒星PSF光晕的程度。我们表明,GPI偏振法可以通过100-200的因子消除非偏振星光,对于除仪器偏振校准当前设置的最小间隔以外的所有最小间隔,都达到了对星云散射光灵敏度的光子噪声极限。

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