论文标题

蓝色星系群是否有热量内气体?

Do blue galaxy-clusters have hot intracluster gas?

论文作者

Misato, Rana, Toba, Yoshiki, Ota, Naomi, Yamamoto, Naoaki, Kodama, Tadayuki, Okabe, Nobuhiro, Oguri, Masamune, Mitsuishi, Ikuyuki

论文摘要

我们在此提出了Subaru望远镜发现的$ z = 0.84 $的蓝色星系群体的系统X射线分析。该样品由通过将红色序列和蓝云调查结合的43个簇组成,涵盖了各种发射极部分(即0.3---0.8)。发射极星系的过度密度区域的空间范围约为半径1〜MPC。从堆叠的弱透镜测量值中估计平均簇质量为$ 0.6(<1.5)\ times10^{14}〜{\ rm m_ \ odot} $。我们分析了XMM-Newton档案数据,并测量了热内介质的X射线光度。结果,在14个簇中略微检测到弥漫性X射线发射,平均发光度为$ 5 \ times 10^{42}〜{\ rm Erg \ \,s^{ - 1}} $。相反,在29个簇中并不重要。蓝色簇比红色主导的集群明显淡淡,X射线光度与发射极部分或丰富度都没有任何有意义的相关性。 X射线表面亮度较低,但估计气体质量的量与$ 10^{13-14}〜{\ rm m _ {\ odot}} $ cluster中观察到的量相当。根据结果​​,我们建议蓝色簇处于早期地层阶段,并且气体尚待压缩和加热以产生可观的X射线。随访光谱测量对于阐明蓝色簇中星系和热气的动态状态和共同进化至关重要。

We present herein a systematic X-ray analysis of blue galaxy-clusters at $z=0.84$ discovered by the Subaru telescope. The sample consisted of 43 clusters identified by combining red-sequence and blue-cloud surveys, covering a wide range of emitter fractions (i.e., 0.3--0.8). The spatial extent of the over-density region of emitter galaxies was approximately 1~Mpc in radius. The average cluster mass was estimated as $0.6 (<1.5)\times10^{14}~{\rm M_\odot}$ from the stacked weak-lensing measurement. We analyzed the XMM-Newton archival data, and measured the X-ray luminosity of the hot intracluster medium. As a result, diffuse X-ray emission was marginally detected in 14 clusters, yielding an average luminosity of $5\times 10^{42}~{\rm erg\,s^{-1}}$. On the contrary, it was not significant in 29 clusters. The blue clusters were significantly fainter than the red-dominated clusters, and the X-ray luminosity did not show any meaningful correlation either with emitter fraction or richness. The X-ray surface brightness was low, but the amount of gas mass was estimated to be comparable to that observed in the $10^{13-14}~{\rm M_{\odot}}$ cluster. Based on the results, we suggest that the blue clusters are at the early formation stage, and the gas is yet to be compressed and heated up to produce appreciable X-rays. Follow-up spectroscopic measurements are essential to clarify the dynamical status and co-evolution of galaxies and hot gas in the blue clusters.

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