中文

利用JWST检验z>2处内禀Ia型超新星光度演化

宇宙学与河外天体物理 2025-02-13 v3

摘要

James Webb Space Telescope (JWST)正在开辟高红移暂现源发现和后续观测的新前沿。在此,我们报告利用JWST发现了一颗光谱确认的Ia型超新星(SN Ia; SN 20232023aeax),红移为 z=2.15z=2.15,并获得了其NIRCam多波段光变曲线。由于SN 20232023aeax偏蓝的颜色(峰值静止帧 BV0.3B-V\sim-0.3)但具有正常的衰减率(Δm15(B)1.25\Delta m_{15}(B)\sim1.25),它落在传统低红移宇宙学截选的边缘,在使用BayeSN模型进行基准标准化后,我们发现SN 20232023aeax的光度距离与 Λ\LambdaCDM在 0.1σ\sim0.1\sigma 范围内一致。SN 20232023aeax是 z>2z>2 暗物质主导宇宙中仅有的第二颗光谱确认的SN Ia(另一颗是SN 20232023adsy),这赋予其罕见的约束力,用于限制SN Ia标准化光度中的任何潜在演化。与SN 20232023adsy(BV0.8B-V\sim0.8)类似,SN 20232023aeax具有相当极端(但相反)的颜色,这可能是由于样本量较小或宿主星系性质等次要因素所致。尽管如此,SN 20232023aeax的光谱与正常的低红移SN Ia光谱高度吻合,我们没有发现SN Ia标准化随红移演化的确凿证据。尽管如此,前两颗光谱确认的 z>2z>2 SNe Ia具有奇特的颜色,合并后相对于 Λ\LambdaCDM产生 1σ\sim1\sigma 的距离斜率,但仍与最近的SN Ia宇宙学测量结果一致。

关键词

引用

@article{arxiv.2411.11953,
  title  = {Testing for Intrinsic Type Ia Supernova Luminosity Evolution at z>2 with JWST},
  author = {J. D. R. Pierel and D. A. Coulter and M. R. Siebert and H. B. Akins and M. Engesser and O. D. Fox and M. Franco and A. Rest and A. Agrawal and Y. Ajay and N. Allen and C. M. Casey and C. Decoursey and N. E. Drakos and E. Egami and A. L. Faisst and S. Gezari and G. Gozaliasl and O. Ilbert and D. O. Jones and M. Karmen and J. S. Kartaltepe and A. M. Koekemoer and Z. G. Lane and R. L. Larson and T. Li and D. Liu and T. J. Moriya and H. J. McCracken and L. Paquereau and R. M. Quimby and R. M. Rich and J. Rhodes and B. E. Robertson and D. B. Sanders and M. Shahbandeh and M. Shuntov and J. D. Silverman and L. G. Strolger and S. Toft and Y. Zenati},
  journal= {arXiv preprint arXiv:2411.11953},
  year   = {2025}
}

备注

Accepted to ApJL. arXiv admin note: text overlap with arXiv:2406.05089