首页> 外文期刊>The Astrophysical journal >TESTING COSMOLOGICAL MODELS WITH TYPE Ic SUPER LUMINOUS SUPERNOVAE
【24h】

TESTING COSMOLOGICAL MODELS WITH TYPE Ic SUPER LUMINOUS SUPERNOVAE

机译:用Ic型超发光超新星测试宇宙学模型

获取原文
           

摘要

The use of type Ic super luminous supernovae (SLSNe Ic) to examine the cosmological expansion introduces a new standard ruler with which to test theoretical models. The sample suitable for this kind of work now includes 11 SLSNe Ic, which have thus far been used solely in tests involving the Λ cold dark matter (ΛCDM) model. In this paper, we broaden the base of support for this new, important cosmic probe by using these observations to carry out a one-on-one comparison between the and ΛCDM cosmologies. We individually optimize the parameters in each cosmological model by minimizing the statistic. We also carry out Monte Carlo simulations based on these current SLSNe Ic measurements to estimate how large the sample would have to be in order to rule out either model at a ~99.7% confidence level. The currently available sample indicates a likelihood of ~70–80% that the universe is the correct cosmology versus ~20–30% for the standard model. These results are suggestive, though not yet compelling, given the current limited number of SLSNe Ic. We find that if the real cosmology is ΛCDM, a sample of ~240 SLSNe Ic would be sufficient to rule out at this level of confidence, while ~480 SLSNe Ic would be required to rule out ΛCDM if the real universe is instead . This difference in required sample size reflects the greater number of free parameters available to fit the data with ΛCDM. If such SLSNe Ic are commonly detected in the future, they could be a powerful tool for constraining the dark-energy equation of state in ΛCDM, and differentiating between this model and the universe.
机译:使用Ic型超发光超新星(SLSNe Ic)检查宇宙学膨胀引入了一种新的标准尺,用于测试理论模型。现在,适合此类工作的样本包括11个SLSNe Ic,到目前为止,它们仅用于涉及“冷暗物质(ΛCDM)”模型的测试中。在本文中,我们通过使用这些观测值对ΛCDM宇宙学和ΛCDM宇宙学进行一对一比较,从而拓宽了对该新的重要宇宙探测器的支持基础。我们通过最小化统计量来分别优化每个宇宙学模型中的参数。我们还基于这些当前的SLSNe Ic测量值进行了蒙特卡洛模拟,以估计必须有多大的样本才能排除置信水平为〜99.7%的任何一个模型。当前可用的样本表明,宇宙是正确的宇宙学的可能性约为70–80%,而标准模型的可能性约为20–30%。考虑到目前有限的SLSNe Ic数量,这些结果具有启发性,尽管尚未令人信服。我们发现,如果真实的宇宙学是ΛCDM,则在这个置信度水平上可以排除〜240 SLSNe Ic的样本,而如果要代替真实宇宙,则将需要约480 SLSNe Ic排除ΛCDM。所需样本大小的这种差异反映出可用自由参数数量更多,可用于ΛCDM拟合数据。如果将来会普遍检测到此类SLSNe Ic,则它们可能是约束ΛCDM中暗能量状态方程并区分该模型与宇宙的强大工具。

著录项

获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号