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首页> 外文期刊>The Astrophysical journal >The JCMT Transient Survey: Stochastic and Secular Variability of Protostars and Disks In the Submillimeter Region Observed over 18 Months
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The JCMT Transient Survey: Stochastic and Secular Variability of Protostars and Disks In the Submillimeter Region Observed over 18 Months

机译:JCMT瞬态调查:18个月以上观测的亚毫米区域内原恒星和盘状星体的随机和长期变化

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摘要

We analyze results from the first 18 months of monthly submillimeter monitoring of eight star-forming regions in the JCMT Transient Survey. In our search for stochastic variability in 1643 bright peaks, only the previously identified source, EC 53, shows behavior well above the expected measurement uncertainty. Another four sources—two disks and two protostars—show moderately enhanced standard deviations in brightness, as expected for stochastic variables. For the two protostars, this apparent variability is the result of single epochs that are much brighter than the mean. In our search for secular brightness variations that are linear in time, we measure the fractional brightness change per year for 150 bright peaks, 50 of which are protostellar. The ensemble distribution of slopes is well fit by a normal distribution with σ?~?0.023. Most sources are not rapidly brightening or fading at submillimeter wavelengths. Comparison against time-randomized realizations shows that the width of the distribution is dominated by the uncertainty in the individual brightness measurements of the sources. A toy model for secular variability reveals that an underlying Gaussian distribution of linear fractional brightness change σ?=?0.005 would be unobservable in the present sample, whereas an underlying distribution with σ?=?0.02 is ruled out. Five protostellar sources, 10% of the protostellar sample, are found to have robust secular measures deviating from a constant flux. The sensitivity to secular brightness variations will improve significantly with a sample over a longer time duration, with an improvement by factor of two expected by the conclusion of our 36 month survey.
机译:我们分析了JCMT瞬态调查中对八个恒星形成区域进行每月亚毫米监测的前18个月的结果。在我们寻找1643个亮峰的随机变异性时,只有先前确定的来源EC 53表现出远远超出预期测量不确定度的行为。正如随机变量所期望的那样,另外四个来源(两个磁盘和两个原恒星)显示出亮度的标准偏差有所提高。对于两个原恒星,这种明显的变异性是单个时期的结果,该时期比平均值明亮得多。在寻找时间上呈线性变化的长期亮度变化时,我们测量了150个明亮峰值(其中50个是原恒星)每年的亮度变化分数。斜率的整体分布与正态分布的σ?〜?0.023完全吻合。在亚毫米波波长下,大多数光源不会迅速变亮或褪色。与时间随机实现的比较表明,分布的宽度由光源的各个亮度测量中的不确定性决定。长期变化的玩具模型表明,线性分数亮度变化σ?=?0.005的基本高斯分布在当前样本中是不可观察的,而排除了σ?=?0.02的基本分布。发现有五个恒星源(占恒星样本的10%)具有稳定的长期测量值,偏离了恒定的通量。在更长的时间内,随着时间的推移,对世俗亮度变化的敏感度将显着提高,而根据我们为期36个月的调查结论,预期将提高两倍。
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