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PRL Advanced Radial-velocity All-sky Search (PARAS): An efficient fiber-fed spectrograph for planet searches

机译:PRL高级径向速度全天搜索(PARAS):一种用于行星搜索的高效光纤馈电光谱仪

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We present here the optical design of an efficient Fiber-fed, Prism Cross-dispersed, Echelle Spectrograph (Resolution ~ 70,000 @seeing limited ~2arcsecs conditions) which will operate in the wavelength region of 3700A to 8100A. It will be used for extra-solar planets searches down to the precision of 3m/s and as well as for follow-up observations for new transit discoveries. The spectrograph design is such that with a beam size of 100mm (4inch) it should suit the existing 1 to 2m class of telescopes available in India. The fiber-fed spectrograph will be installed with a 1.2m telescope, which is situated at Mt. Abu (5800feet), Rajasthan, India. We estimate the spectrograph to be >30% efficient from the slit to the CCD detector, and up to 15% efficient including sky, telescope, fiber-fed optics etc. We expect to reach the S/N ratio of 70 on a 10 mag star for an integration time of 40mins. We aim to achieve 5m/s to 3m/s Radial Velocity accuracies on such a star using the simultaneous ThAr referencing method. Since thermal stability is absolutely necessary to achieve <5m/s RV accuracies, the whole spectrograph is planned to be kept inside a vibration free isolated tank under low vacuum (0.001 mbar) in a thermally isolated room at 28C +/- 0.01C. It should see the first light by the summer of 2009. We are guaranteed at least 120 nights per year for the planet search program, more nights are possible.
机译:我们在这里介绍一种有效的光纤馈电棱镜交叉分散的埃歇尔光谱仪的光学设计(分辨率约70,000,在有限的约2 arcsecs条件下),它将在3700A至8100A的波长范围内工作。它将用于太阳外行星的搜索,精度可降至3m / s,并用于新的过境发现的后续观测。光谱仪的设计使得光束尺寸为100mm(4英寸)时,它应该适合印度现有的1至2m级望远镜。光纤馈电光谱仪将安装位于山顶的1.2m望远镜。印度拉贾斯坦邦的阿布(5800英尺)。我们估计从狭缝到CCD检测器的光谱仪效率> 30%,包括天空,望远镜,光纤馈电光学器件等在内,光谱仪的效率最高可达15%。我们预计10 mag时信噪比将达到70持续40分钟的整合时间。我们的目标是使用ThAr同步参考方法在此类恒星上实现5m / s至3m / s的径向速度精度。由于绝对要达到<5m / s RV精度,绝对必须具有热稳定性,因此计划将整个光谱仪保存在28C +/- 0.01C的绝热室内低真空(0.001 mbar)的无振动隔离罐中。它应该会在2009年夏天开始亮起。我们保证每年至少要有120个晚上的行星搜寻计划,可能会有更多的夜晚。

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