论文标题
Carina大型恒星(芯片)的高对比度成像项目I. QZ汽车上的方法和概念证明
The Carina High-Contrast Imaging Project for massive Stars (CHIPS) I. Methodology and proof of concept on QZ Car ($\equiv$ HD93206)
论文作者
论文摘要
像公司这样的巨大明星。但是,鉴于同伴和中央恒星之间的较大亮度对比,在角度分离($ρ$)小于1“(〜1000-3000 au)小于1”(〜1000-3000 au)上仍然很难检测到非常困难的检测。在当前调查的典型检测限制之外的低质量同伴($δ\ Mathrm {magrm {mag} \ Lessim 5 $ at $ρ\ lysesim 1 $”)的限制,我们使用VLT的Carina coronagraphic仪器对O和Wolf-rayet stars进行了调查。在第一篇论文中,我们旨在介绍调查,介绍该方法,并使用多系统QZ〜CAR证明球体对于巨大恒星的能力。应用高对比度成像技术,例如角度分化成像技术以及PSF拟合,用于检测和测量仪器每个光谱通道中同伴的相对通量。 We detected 19 sources around the QZ~Car system with detection limits of 9~mag at $ρ> 200$~mas for IFS and as faint as 13~mag at $ρ$ > 1".8 for IRDIS (corresponding to sub-solar masses for potential companions). All but two are reported here for the first time. Based on this proof of concept, we showed that VLT/SPHERE allows us to reach the sub-solar mass regime of the companion mass function. This用大量巨大的恒星样本为这种类型的观察铺平了道路,以在迄今为止无法接近的参数空间区域中对大型恒星的多样性提供新的约束。
Massive stars like company. However, low-mass companions have remained extremely difficult to detect at angular separations ($ρ$) smaller than 1" (~1000-3000 au considering typical distance to nearby massive stars) given the large brightness contrast between the companion and the central star. Constraints on the low-mass end of the companions mass-function for massive stars are however needed, for example to help distinguishing between various scenarios for the formation of massive stars. To obtain statistically significant constraint on the presence of low-mass companions beyond the typical detection limit of current surveys ($Δ\mathrm{mag} \lesssim 5$ at $ρ\lesssim 1$"), we initiated a survey of O and Wolf-Rayet stars in the Carina region using the SPHERE coronagraphic instrument on the VLT. In this first paper, we aim to introduce the survey, to present the methodology and to demonstrate the capability of SPHERE for massive stars using the multiple system QZ~Car. High-contrast imaging techniques, such as angular- and spectral-differential imaging techniques as well as PSF-fitting, were applied to detect and measure the relative flux of companions in each spectral channel of the instrument. We detected 19 sources around the QZ~Car system with detection limits of 9~mag at $ρ> 200$~mas for IFS and as faint as 13~mag at $ρ$ > 1".8 for IRDIS (corresponding to sub-solar masses for potential companions). All but two are reported here for the first time. Based on this proof of concept, we showed that VLT/SPHERE allows us to reach the sub-solar mass regime of the companion mass function. This paves the way for this type of observation with a large sample of massive stars to provide novel constraints on the multiplicity of massive stars in a region of the parameter space that has remained inaccessible so far.