首页> 外文期刊>The Astrophysical Journal. Letters >CONSTRAINING PHYSICAL PROPERTIES OF TYPE IIn SUPERNOVAE THROUGH RISE TIMES AND PEAK LUMINOSITIES
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CONSTRAINING PHYSICAL PROPERTIES OF TYPE IIn SUPERNOVAE THROUGH RISE TIMES AND PEAK LUMINOSITIES

机译:通过上升时间和峰值光强来控制超新星中I型的物理性质

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We investigate the diversity in the wind density, supernova ejecta energy, and ejecta mass in Type IIn supernovae based on their rise times and peak luminosities.We show that the wind density and supernova ejecta properties can be estimated independently if both the rise time and peak luminosity are observed. The peak luminosity is mostly determined by the supernova properties and the rise time can be used to estimate the wind density. We find that the ejecta energies of Type IIn supernovae need to vary by factors of 0.2-5 from the average if their ejecta masses are similar. The diversity in the observed rise times indicates that their wind densities vary by factors of 0.2-2 from the average. We show that Type IIn superluminous supernovae should have not only large wind density but also large ejecta energy and/or small ejecta mass to explain their large luminosities and the rise times at the same time. We also note that shock breakout does not necessarily occur in the wind even if it is optically thick, except for the case of superluminous supernovae, and we analyze the observational data both with and without assuming that the shock breakout occurs in the dense wind of Type IIn supernovae.
机译:我们根据IIn型超新星的上升时间和峰值光度研究了它们的风密度,超新星喷射能量和喷射质量的多样性,结果表明,如果上升时间和峰值都可以独立估计风密度和超新星喷射特性观察到光度。峰值光度主要由超新星性质决定,上升时间可用于估算风密度。我们发现,如果IIn型超新星的喷射质量相似,则其喷射能量需要与平均值相差0.2-5倍。观测到的上升时间的多样性表明,它们的风密度与平均值之差为0.2-2。我们表明,IIn型超发光超新星不仅应具有较大的风密度,而且还应具有较大的喷射能量和/或较小的喷射质量,以同时解释它们的大光度和上升时间。我们还注意到,即使在光学上较厚,风中也不一定会发生冲击爆发,除了超发光超新星的情况外,我们分析了观测数据,无论是否假设冲击爆发都在Type Type的强风中发生我是超新星。

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