筛选蓝宝石:iPTF潮汐破坏事件的系统选择。

IF 8.6 1区 物理与天体物理 Q1 ASTRONOMY & ASTROPHYSICS
Astrophysical Journal Supplement Series Pub Date : 2018-10-01 Epub Date: 2018-09-27 DOI:10.3847/1538-4365/aad8b1
T Hung, S Gezari, S B Cenko, S van Velzen, N Blagorodnova, Lin Yan, S R Kulkarni, R Lunnan, T Kupfer, G Leloudas, A K H Kong, P E Nugent, C Fremling, Russ R Laher, F J Masci, Y Cao, R Roy, T Petrushevska
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引用次数: 32

摘要

我们介绍了在广域(4800°g2), g + R波段,中间帕洛玛瞬态工厂(iPTF)实验中系统选择潮汐中断事件(TDEs)的结果。我们的选择目标是典型的光学选择tde:位于红色星系中心的明亮(>60%的通量增加)和蓝色瞬变。利用光度选择标准从总共493个核瞬态中筛选出26个样本源,然后利用尼尔·格瑞尔斯Swift望远镜的后续紫外成像、地面光谱学和光曲线拟合将它们分类为14个Ia型超新星(SNe Ia)、9个高度可变的活动星系核(agn)、2个已确认的tde和1个潜在的核心坍缩超新星。我们发现可以通过采用更严格的瞬态色切(g - r < -0.2 mag)来过滤agn;此外,紫外成像是过滤新光的最佳鉴别器,因为新光Ia在其早期阶段可以像tde一样呈现出光学上的蓝色。然而,当紫外光学颜色不可用时,更高精度的天体测量也可以有效地减少光学中的SNe污染。我们最严格的光学光度选择标准产生4.5:1的污染率,允许在ZTF时代进行完整的光谱跟踪和实时分类的可控数量的TDE候选者。我们测量到每个星系的TDE速率为1.7 - 1.3 + 2.9 × 10 - 4加仑- 1年- 1(泊松统计中的90% CL)。这并没有考虑到我们选择标准之外的TDE,因此可能不能反映TDE人口总数,这尚未得到充分的映射。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

SIFTING FOR SAPPHIRES: SYSTEMATIC SELECTION OF TIDAL DISRUPTION EVENTS IN iPTF.

SIFTING FOR SAPPHIRES: SYSTEMATIC SELECTION OF TIDAL DISRUPTION EVENTS IN iPTF.

SIFTING FOR SAPPHIRES: SYSTEMATIC SELECTION OF TIDAL DISRUPTION EVENTS IN iPTF.

SIFTING FOR SAPPHIRES: SYSTEMATIC SELECTION OF TIDAL DISRUPTION EVENTS IN iPTF.

We present results from a systematic selection of tidal disruption events (TDEs) in a wide-area (4800 deg2), g + R band, Intermediate Palomar Transient Factory (iPTF) experiment. Our selection targets typical optically-selected TDEs: bright (>60% flux increase) and blue transients residing in the center of red galaxies. Using photometric selection criteria to down-select from a total of 493 nuclear transients to a sample of 26 sources, we then use follow-up UV imaging with the Neil Gehrels Swift Telescope, ground-based optical spectroscopy, and light curve fitting to classify them as 14 Type Ia supernovae (SNe Ia), 9 highly variable active galactic nuclei (AGNs), 2 confirmed TDEs, and 1 potential core-collapse supernova. We find it possible to filter AGNs by employing a more stringent transient color cut (g - r < -0.2 mag); further, UV imaging is the best discriminator for filtering SNe, since SNe Ia can appear as blue, optically, as TDEs in their early phases. However, when UV-optical color is unavailable, higher precision astrometry can also effectively reduce SNe contamination in the optical. Our most stringent optical photometric selection criteria yields a 4.5:1 contamination rate, allowing for a manageable number of TDE candidates for complete spectroscopic follow-up and real-time classification in the ZTF era. We measure a TDE per galaxy rate of 1.7 - 1.3 + 2.9 × 10 - 4 gal - 1 yr - 1 (90% CL in Poisson statistics). This does not account for TDEs outside our selection criteria, thus may not reflect the total TDE population, which is yet to be fully mapped.

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来源期刊
Astrophysical Journal Supplement Series
Astrophysical Journal Supplement Series 地学天文-天文与天体物理
CiteScore
14.50
自引率
5.70%
发文量
264
审稿时长
2 months
期刊介绍: The Astrophysical Journal Supplement (ApJS) serves as an open-access journal that publishes significant articles featuring extensive data or calculations in the field of astrophysics. It also facilitates Special Issues, presenting thematically related papers simultaneously in a single volume.
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