论文标题

使用二进制差分成像和magao/clio获得的17个二进制系统的伴侣质量限制

Companion Mass Limits for 17 Binary Systems Obtained with Binary Differential Imaging and MagAO/Clio

论文作者

Pearce, Logan A., Males, Jared R., Weinberger, Alycia J., Long, Joseph D., Morzinski, Katie M., Close, Laird M., Hinz, Philip M.

论文摘要

通过改进的星星提取和后处理技术提高直接检测能力,对于发现新的低质量伴侣并在更长的波长下表征已知的伴侣至关重要。我们使用二进制差分成像(BDI)介绍了使用麦哲伦自适应光学系统(MAGAO)(MAGAO)观察到的17个二元星系和Clio红外摄像头的结果。 BDI是应用于红外线斑块中的宽二进制星系(2 \ arcsec $<Δρ<$ 10 \ arcsec)的参考差异成像(RDI)和角度差成像(ADI)的应用。每个恒星都用作另一个恒星功能(PSF)的参考,我们使用主成分分析进行了PSF估计和减法。我们在初次调查中使用BDI与Magao/Clio一起在L $^\ Prime $和3.95 $ $ M $ M频段的初步调查中报告了35颗星的对比度和质量限制。我们实现的对比在系统之间有所不同,并跨越了从3.0-7.5的幅度和一系列分离范围从0.2 \ arcsec到$ \ sim $ 2 \ arcsec。我们的调查中的星星跨越了一系列质量,我们实现的对比对应于晚期型M矮人的质量,低至$ \ sim $ 10 m $ _ {\ rm {jup {jup}} $。我们还报告了在HIP 67506 A(SPT G5V,Mass $ \ sim $ 1.2 \ msun)周围0.2 \ arcsec(18 au)处的候选伴侣信号的检测,我们估计它为〜60-90 m $ $ _ {\ rm {jup}} $。我们发现,在高晶格条件下,BDI的有效性最高。

Improving direct detection capability close to the star through improved star-subtraction and post-processing techniques is vital for discovering new low-mass companions and characterizing known ones at longer wavelengths. We present results of 17 binary star systems observed with the Magellan Adaptive Optics system (MagAO) and the Clio infrared camera on the Magellan Clay Telescope using Binary Differential Imaging (BDI). BDI is an application of Reference Differential Imaging (RDI) and Angular Differential Imaging (ADI) applied to wide binary star systems (2\arcsec $<Δρ<$ 10\arcsec) within the isoplanatic patch in the infrared. Each star serves as the point-spread-function (PSF) reference for the other, and we performed PSF estimation and subtraction using Principal Component Analysis. We report contrast and mass limits for the 35 stars in our initial survey using BDI with MagAO/Clio in L$^\prime$ and 3.95$μ$m bands. Our achieved contrasts varied between systems, and spanned a range of contrasts from 3.0-7.5 magnitudes and a range of separations from 0.2\arcsec to $\sim$2\arcsec. Stars in our survey span a range of masses, and our achieved contrasts correspond to late-type M dwarf masses down to $\sim$10 M$_{\rm{jup}}$. We also report detection of a candidate companion signal at 0.2\arcsec (18 AU) around HIP 67506 A (SpT G5V, mass $\sim$1.2\Msun), which we estimate to be ~60-90 M$_{\rm{jup}}$. We found that the effectiveness of BDI is highest for approximately equal brightness binaries in high-Strehl conditions.

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