论文标题

用Nustar和Chandra测得的星系簇温度的系统比较

A Systematic Comparison of Galaxy Cluster Temperatures Measured with NuSTAR and Chandra

论文作者

Wallbank, A. N., Maughan, B. J., Gastaldello, F., Potter, C., Wik, D. R.

论文摘要

星系簇的温度测量值用于确定其质量,而这些质量又用于确定宇宙学参数。但是,通过不同望远镜测量的温度之间的系统差异意味着这种质量估计值是系统不确定性的重要来源。我们在Chandra和Nustar测得的群集温度之间进行了第一个系统比较。这为与大多数其他观测值相比,由于Nustar的响应更难响应,对跨校准聚类温度的努力提供了有用的贡献。我们测量使用Nustar和Chandra观察到的8个簇的平均温度。我们将nustar光谱拟合在硬(3-10 keV)的能量带中,而在硬质和宽(0.6-9 KEV)频段中,Chandra Spectra都将其拟合。我们将幂律跨校准模型拟合到最终的温度。在Chandra温度为10 keV的情况下,平均Nustar温度为$(10.5 \ pm 3.7)\%$和$(15.7 \ pm 4.6)\%$比钱德拉(Chandra)分别拟合了Chandra。我们探索了簇的背景建模和多相温度结构的系统学的影响,并发现它们不影响我们的结果。我们的样品主要是将簇与复杂的热结构合并,因此不是理想的校准目标。但是,鉴于Nustar的响应更难,预计对于非等温簇,将测量比Chandra更高的平均温度,因此我们将测量值解释为Nustar和Chandra之间温度差异的下限。

Temperature measurements of galaxy clusters are used to determine their masses, which in turn are used to determine cosmological parameters. However, systematic differences between the temperatures measured by different telescopes imply a significant source of systematic uncertainty on such mass estimates. We perform the first systematic comparison between cluster temperatures measured with Chandra and NuSTAR. This provides a useful contribution to the effort of cross-calibrating cluster temperatures due to the harder response of NuSTAR compared with most other observatories. We measure average temperatures for 8 clusters observed with NuSTAR and Chandra. We fit the NuSTAR spectra in a hard (3-10 keV) energy band, and the Chandra spectra in both the hard and a broad (0.6-9 keV) band. We fit a power-law cross-calibration model to the resulting temperatures. At a Chandra temperature of 10 keV, the average NuSTAR temperature was $(10.5 \pm 3.7)\%$ and $(15.7 \pm 4.6)\%$ lower than Chandra for the broad and hard band fits respectively. We explored the impact of systematics from background modelling and multiphase temperature structure of the clusters, and found that these did not affect our results. Our sample are primarily merging clusters with complex thermal structures so are not ideal calibration targets. However, given the harder response of NuSTAR it would be expected to measure a higher average temperature than Chandra for a non-isothermal cluster, so we interpret our measurement as a lower limit on the difference in temperatures between NuSTAR and Chandra.

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