论文标题

Zwicky瞬态设施的发光红色Novae和中间发光红色瞬变的体积速率

Volumetric rates of Luminous Red Novae and Intermediate Luminosity Red Transients with the Zwicky Transient Facility

论文作者

Karambelkar, Viraj R., Kasliwal, Mansi M., Blagorodnova, Nadejda, Sollerman, Jesper, Aloisi, Robert, Anand, Shreya G., Andreoni, Igor, Brink, Thomas G., Bruch, Rachel, Cook, David, Das, Kaustav Kashyap, De, Kishalay, Drake, Andrew, Filippenko, Alexei V., Fremling, Christoffer, Helou, George, Ho, Anna, Jencson, Jacob, Jones, David, Laher, Russ R., Masci, Frank J., Patra, Kishore C., Purdum, Josiah, Reedy, Alexander, Sit, Tawny, Sharma, Yashvi, Tzanidakis, Anastasios, van der Walt, Stefan J., Yao, Yuhan, Zhang, Chaoran

论文摘要

发光的红色Novae(LRNE)是瞬态的,其特征是低亮度和膨胀速度,并且与恒星二进制中的合并或共同的包膜弹出有关。中间发光性红色瞬变(ILRT)是一种观察类似的类别,具有未知来源,但通常认为是超级AGB恒星中的电子捕获超新星(ECSN),或者是尘土飞扬的发光蓝色变量(LBV)中的爆发。在本文中,我们提出了一个系统样本的8个LRNE和8个ILRT,作为Zwicky Transient设施(ZTF)的本地宇宙(CLU)实验的一部分检测到。 CLU实验在光谱上分类了与附近($ <150美元MPC)星系相关的ZTF瞬变,可实现M $ _ {R} <20 $ \,MAG的80%完整性。使用ZTF-CLU样品,我们得出了第一个系统的LRNE量量利率为7.8 $^{+6.5} _ { - 3.7} \ times10^{ - 5} $ MPC $^{ - 3} $ yr $^{ - yr $^{ - 1} $ $ -16 \ leq $ m $ _ {\ rm {r}} $$ \ leq -11 $ mag。我们发现,在此亮度范围内,LRN速率缩放为DN/DL $ \ propto l^{ - 2.5 \ pm0.3} $ - 比先前衍生的缩放比例比以前衍生的缩放率降低了$ l^{ - 1.4 \ pm0.3} $的$ lrne(m $ _ $ _ {V v} $)。 LRNE在高发光性下的陡峭功率定律与二元种群合成模型预测的大量合并率一致。我们发现,最亮的LRNE(m $ _ {r} \ leq-13 $ mag)的速率与在哈勃时间内合并的双重紧凑对象(DCO)的大量祖细胞是一致的。对于ILTS,我们得出$ 2.6^{+1.8} _ { - 1.4} \ times10^{ - 6} $ mpc $^{ - 3} $ yr $^{ - 1} $的$ 2.6^{+1.8} _ { - 1.4} \ times10^{ - 6} l^{ - 2.5 \ pm0.5} $。该速率为局部核心崩溃超新星率的$ \ \%$ $,并且与理论ECSN率估计值一致。

Luminous red novae (LRNe) are transients characterized by low luminosities and expansion velocities, and are associated with mergers or common envelope ejections in stellar binaries. Intermediate-luminosity red transients (ILRTs) are an observationally similar class with unknown origins, but generally believed to either be electron capture supernovae (ECSN) in super-AGB stars, or outbursts in dusty luminous blue variables (LBVs). In this paper, we present a systematic sample of 8 LRNe and 8 ILRTs detected as part of the Census of the Local Universe (CLU) experiment on the Zwicky Transient Facility (ZTF). The CLU experiment spectroscopically classifies ZTF transients associated with nearby ($<150$ Mpc) galaxies, achieving 80% completeness for m$_{r}<20$\,mag. Using the ZTF-CLU sample, we derive the first systematic LRNe volumetric-rate of 7.8$^{+6.5}_{-3.7}\times10^{-5}$ Mpc$^{-3}$ yr$^{-1}$ in the luminosity range $-16\leq$M$_{\rm{r}}$$\leq -11$ mag. We find that in this luminosity range, the LRN rate scales as dN/dL $\propto L^{-2.5\pm0.3}$ - significantly steeper than the previously derived scaling of $L^{-1.4\pm0.3}$ for lower luminosity LRNe (M$_{V}\geq-10$). The steeper power law for LRNe at high luminosities is consistent with the massive merger rates predicted by binary population synthesis models. We find that the rates of the brightest LRNe (M$_{r}\leq-13$ mag) are consistent with a significant fraction of them being progenitors of double compact objects (DCOs) that merge within a Hubble time. For ILRTs, we derive a volumetric rate of $2.6^{+1.8}_{-1.4}\times10^{-6}$ Mpc$^{-3}$yr$^{-1}$ for M$_{\rm{r}}\leq-13.5$, that scales as dN/dL $\propto L^{-2.5\pm0.5}$. This rate is $\approx1-5\%$ of the local core-collapse supernova rate, and is consistent with theoretical ECSN rate estimates.

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