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The Mt John University Observatory search for Earth-mass planets in the habitable zone of alpha Centauri

机译:约翰山大学天文台在半人马座Alpha宜居带搜寻地球质量的行星

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摘要

The holy grail' in planet hunting is the detection of an Earth-analogue: a planet with similar mass as the Earth and an orbit inside the habitable zone. If we can find such an Earth-analogue around one of the stars in the immediate solar neighbourhood, we could potentially even study it in such great detail to address the question of its potential habitability. Several groups have focused their planet detection efforts on the nearest stars. Our team is currently performing an intensive observing campaign on the Centauri system using the High Efficiency and Resolution Canterbury University Large Echelle Spectrograph (Hercules) at the 1m McLellan telescope at Mt John University Observatory in New Zealand. The goal of our project is to obtain such a large number of radial velocity (RV) measurements with sufficiently high temporal sampling to become sensitive to signals of Earth-mass planets in the habitable zones of the two stars in this binary system. Over the past few years, we have collected more than 45000 spectra for both stars combined. These data are currently processed by an advanced version of our RV reduction pipeline, which eliminates the effect of spectral cross-contamination. Here we present simulations of the expected detection sensitivity to low-mass planets in the habitable zone by the Hercules programme for various noise levels. We also discuss our expected sensitivity to the purported Earth-mass planet in a 3.24-day orbit announced by Dumusque et al. (2012).
机译:行星狩猎中的圣杯是对地球类似物的探测:质量与​​地球相似的行星,并且在可居住区域内有一个轨道。如果我们能够在紧邻的太阳附近发现一颗类似地球的恒星类似地球,那么我们甚至有可能进行如此详尽的研究,以解决其潜在的可居住性问题。有几个小组将他们的行星探测工作集中在最近的恒星上。我们的团队目前正在使用新西兰山约翰大学天文台的1m McLellan望远镜上的高效和高分辨率坎特伯雷大学大型埃希尔光谱仪(大力神)对半人马座系统进行密集的观测活动。我们项目的目标是通过足够高的时间采样获得如此大量的径向速度(RV)测量值,以使它对该双星系统中两颗恒星可居住区域中的地球质量行星的信号变得敏感。在过去的几年中,我们为两颗恒星合计收集了超过45000个光谱。这些数据目前由我们的RV减少管线的高级版本处理,从而消除了光谱交叉污染的影响。在这里,我们通过Hercules程序针对各种噪声水平,对可居住区域中低质量行星的预期探测灵敏度进行了模拟。我们还讨论了Dumusque等人宣布的在3.24天的轨道中对声称的地球质量行星的预期敏感性。 (2012)。

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