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首页> 外文期刊>Astronomy and astrophysics >Early-time light curves of Type Ib/c supernovae from the SDSS-II Supernova Survey
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Early-time light curves of Type Ib/c supernovae from the SDSS-II Supernova Survey

机译:SDSS-II超新星调查的Ib / c型超新星的早期光曲线

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Context. Type Ib/c supernovae (SNe Ib/c) have been investigated in several single-object studies; however, there is still a paucity of works concerning larger, homogeneous samples of these hydrogen-poor transients, in particular regarding the premaximum phase of their light curves. Aims. In this paper we present and analyze the early-time optical light curves (LCs, ugriz) of 20 SNe Ib/c from the Sloan Digital Sky Survey (SDSS) SN survey II, aiming to study their observational and physical properties, as well as to derive their progenitor parameters. Methods. High-cadence, multiband LCs are fitted with a functional model and the best-fit parameters are compared among the SN types. Bolometric LCs (BLCs) are constructed for the entire sample. We also computed the black-body (BB) temperature (TBB) and photospheric radius (Rph) evolution for each SN via BB fits on the spectral energy distributions. In addition, the bolometric properties are compared to both hydrodynamical and analytical model expectations. Results. Complementing our sample with literature data, we find that SNe Ic and Ic-BL (broad-line) have shorter rise times than those of SNe Ib and IIb. The decline rate parameter, Δm15, is similar among the different subtypes. SNe Ic appear brighter and bluer than SNe Ib, but this difference vanishes if we consider host galaxy extinction corrections based on colors. Templates for SN Ib/c LCs are presented. Our SNe have typical TBB of ~10?000 K at the peak and Rph of ~1015 cm. Analysis of the BLCs of SNe Ib and Ic gives typical ejecta masses Mej≈ 3.6?5.7 ?M⊙, energies EK≈ 1.5?1.7×1051 erg, and M(56Ni) ≈ 0.3 ?M⊙. Higher values for EK and M(56Ni) are estimated for SNe Ic-BL (Mej≈ 5.4 ?M⊙, EK≈ 10.7×1051 erg, M(56Ni) ≈ 1.1 ?M⊙). For the majority of SNe Ic and Ic-BL, we can put strong limits (5.9 days plateau seems to be detected. The rising part of the BLCs is reproduced by power laws with index <2. For two events (SN 2005hm and SN 2007qx), we find signatures of a possible shock break-out cooling tail. Conclusions. Based on the limits for the plateau length and on the slow rise of the BLCs, we find that in most of our SNe Ic and Ic-BL the 56Ni is mixed out to the outer layers, suggesting that SN Ic progenitors are de facto helium poor. The derived progenitor parameters (56Ni, EK, Mej) are consistent with previous works.
机译:上下文。 Ib / c型超新星(SNe Ib / c)已在多个单对象研究中进行了研究;但是,关于这些贫氢瞬态的较大,均匀样品的工作仍然很少,特别是关于它们的光曲线的最大相位。目的在本文中,我们通过Sloan数字天空调查(SDSS)SN调查II提出并分析了20 SNe Ib / c的早期光学光曲线(LC,ugriz),旨在研究其观测和物理特性,以及得出祖细胞参数。方法。高节奏,多频带LC装有功能模型,并且在SN类型之间比较了最适合的参数。为整个样品构建了体积LC(BLC)。我们还通过BB拟合光谱能量分布,计算了每个SN的黑体(BB)温度(TBB)和光球半径(Rph)演变。此外,将辐射热性能与流体动力学和分析模型期望值进行了比较。结果。通过对文献数据进行补充,我们发现SNe Ic和Ic-BL(宽线)的上升时间比SNe Ib和IIb的上升时间短。不同子类型之间的下降率参数Δm15相似。 SNe Ic比SNe Ib明亮和蓝色,但是如果我们考虑基于颜色的宿主星系消光校正,这种差异就消失了。提供了SN Ib / c LC的模板。我们的SNe在峰值处的典型TBB为〜10?000 K,Rph为〜1015 cm。对SNe Ib和Ic的BLC的分析给出了典型的喷射质量Mej≈3.6?5.7?M⊙,能量EK≈1.5?1.7×1051 erg,M(56Ni)≈0.3?M⊙。对于SNe Ic-BL,估计出较高的EK和M(56Ni)值(Mej≈5.4?M⊙,EK≈10.7×1051 erg,M(56Ni)≈1.1?M⊙)。对于大多数SNe Ic和Ic-BL,我们可以设置严格的限制(似乎已检测到5.9天的平稳期。BLC的上升部分是通过幂定律复制的,指数为<2。对于两个事件(SN 2005hm和SN 2007qx ),我们发现了可能的冲击破坏冷却尾巴的结论结论:根据平稳时间长度的限制和BLC的缓慢上升,我们发现在大多数SNe Ic和Ic-BL中,56Ni为混合到外层,表明SN Ic祖先实际上是贫氦的,推导的祖先参数(56Ni,EK,Mej)与以前的工作一致。

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