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An Unbiased Survey of 500 Nearby Stars for Debris Disks: A JCMT Legacy Program

机译:JCMT旧版计划对附近500颗恒星进行无偏盘调查

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摘要

We present the scientific motivation and observing plan for an upcoming detection survey for debris disks using the James Clerk Maxwell Telescope. The SCUBA‐2 Unbiased Nearby Stars (SUNS) survey will observe 500 nearby main‐sequence and subgiant stars (100 of each of the A, F, G, K, and M spectral classes) to the 850 μm extragalactic confusion limit to search for evidence of submillimeter excess, an indication of circumstellar material. The survey distance boundaries are 8.6, 16.5, 22, 25, and 45 pc for M, K, G, F, and A stars, respectively, and all targets lie between the declinations of −40° to 80°. In this survey, no star will be rejected based on its inherent properties: binarity, presence of planetary companions, spectral type, or age. The survey will commence in late 2007 and will be executed over 390 hr, reaching 90% completion within 2 years. This will be the first unbiased survey for debris disks since the Infrared Astronomical Satellite. We expect to detect ~125 debris disks, including ~50 cold disks not detectable in current shorter wavelength surveys. To fully exploit the order of magnitude increase in debris disks detected in the submillimeter, a substantial amount of complementary data will be required, especially at shorter wavelengths, to constrain the temperatures and masses of discovered disks. High‐resolution studies will likely be required to resolve many of the disks. Therefore, these systems will be the focus of future observational studies using a variety of observatories, including Herschel, ALMA, and JWST, to characterize their physical properties. For nondetected systems, this survey will set constraints (upper limits) on the amount of circumstellar dust, of typically 200 times the Kuiper Belt mass, but as low as 10 times the Kuiper Belt mass for the nearest stars in the sample (≈2 pc).
机译:我们为即将使用James Clerk Maxwell望远镜进行的碎片盘检测调查提供了科学依据和观测计划。 SCUBA‐2无偏近星(SUNS)调查将观察到500个近主序和次星(A,F,G,K和M光谱类别的每一个100个)至850μm星系外混淆极限以进行搜索亚毫米超标的证据,表明是星际物质。 M,K,G,F和A星的测量距离边界分别是8.6、16.5、22、25和45 pc,所有目标都位于-40°至80°的偏角之间。在这项调查中,不会根据恒星的固有特性拒绝其恒星:双星性,行星伴星的存在,光谱类型或年龄。这项调查将于2007年底开始,将在390个小时内执行,并在2年内完成90%的完成。这将是自红外天文卫星以来首次对磁盘进行无偏测量。我们希望能够检测到约125个碎片盘,包括在目前的较短波长调查中无法检测到的约50个冷盘。为了充分利用在亚毫米中检测到的碎片盘的数量级增加,将需要大量的补充数据,尤其是在较短的波长下,以限制发现的磁盘的温度和质量。解决许多磁盘可能需要高分辨率研究。因此,这些系统将成为未来使用各种观测站(包括Herschel,ALMA和JWST)表征其物理特性的观测研究的重点。对于未探测到的系统,本次调查将对星尘的数量设置限制(上限),通常为柯伊伯带质量的200倍,但对于样本中最近的恒星,其低至柯伊伯带质量的10倍(≈2pc) )。

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