中文

SN 2023zaw:源自低质量前身星的超剥离、贫镍超新星

高能天体物理现象 2024-08-09 v3 太阳与恒星天体物理

摘要

我们介绍SN 2023zaw——一颗次亮(Mr=16.7\mathrm{M_r} = -16.7 mag)且快速演化(t1/2,r=4.9\mathrm{t_{1/2,r}} = 4.9 days)的超新星,其镍质量(0.002\approx0.002 M\mathrm{M_\odot})为迄今所有已发现剥离包层超新星中最低。光球层光谱以宽He I和Ca近红外发射线为主,速度约为10 00012 000\sim10\ 000 - 12\ 000 km s1\mathrm{km\ s^{-1}}。晚期光谱显示出约\sim1000 km s1\ \mathrm{km\ s^{-1}}的窄He I发射线,表明其与富氦星周物质存在相互作用。SN 2023zaw位于一个恒星形成星系的旋臂中。我们通过拟合激波冷却辐射和镍衰变的组合,对光变曲线进行了辐射流体动力学和解析建模。前身星的最佳拟合包层质量约为0.2\approx0.2 M\mathrm{M_\odot},包层半径约为50\approx50 R\mathrm{R_\odot}。极低的镍质量和极低的抛射物质量(0.5\approx0.5 M\mathrm{M_\odot})表明这是一颗超剥离超新星,源自一个在密近双星系统中损失质量的低质量氦星(零龄主序质量 < 10 M\mathrm{M_\odot})。这是形成双中子星系统的一条途径,其并合可由LIGO探测到。SN 2023zaw强调了存在一个先前未被发现的、镍质量极低(<0.005< 0.005 M\mathrm{M_\odot})的剥离包层超新星族群,可通过深度和高节奏的暂现源巡天进行探索。

关键词

引用

@article{arxiv.2403.08165,
  title  = {SN 2023zaw: an ultra-stripped, nickel-poor supernova from a low-mass progenitor},
  author = {Kaustav K. Das and Christoffer Fremling and Mansi M. Kasliwal and Steve Schulze and Jesper Sollerman and Viraj Karambelkar and Sam Rose and Shreya Anand and Igor Andreoni and Marie Aubert and Sean J. Brennan and S. Bradley Cenko and Michael W. Coughlin and B. O'Connor and Kishalay De and Jim Fuller and Matthew Graham and Erica Hammerstein and Annastasia Haynie and K-Ryan Hinds and Io Kleiser and S. R. Kulkarni and Zeren Lin and Chang Liu and Ashish A. Mahabal and Christopher Martin and Adam A. Miller and James D. Neill and Daniel A. Perley and Priscila J. Pessi and Nikolaus Z. Prusinski and Josiah Purdum and Vikram Ravi and Ben Rusholme and Samantha Wu and Avery Wold and Lin Yan},
  journal= {arXiv preprint arXiv:2403.08165},
  year   = {2024}
}

备注

Accepted for publication in ApJL