论文标题
JWST/MIRI模拟成像:对深度调查中遥远星系的模糊恒星形成和AGN的见解
JWST/MIRI Simulated Imaging: Insights into Obscured Star-Formation and AGN for Distant Galaxies in Deep Surveys
论文作者
论文摘要
JWST Miri仪器将以前所未有的敏感性和棱角分辨率在MID-IR中彻底改变了阿拉加术的天文学。在这里,我们评估了宇宙进化论早期发行科学(CEER)调查中限制星系特性的潜在潜力。我们从计划的Miri指向中的真实来源的光谱能量分布(SED)中得出了估计的Miri通量。我们还获得了假设AGN-GALAXY混合模型的Miri通量,这些模型改变了AGN分数对总IR亮度的贡献($ \ rm frac_ {agn} $)。基于这些模型通量,我们使用Mirisim模拟了从F770W到F2100W的6个频段中的Ceer成像(3.6小时暴露),并使用JWST管道减少这些数据。我们使用TPHOT执行PSF匹配的光度法,并使用X乘以来的源SED,同时对光度降速度和其他物理特性进行建模。添加MIRI数据,红移和$ \ rm frac_ {agn} $的准确性通常通过$ \ gtrsim 2 $的因子提高了所有来源,以$ z \ lyssim 3 $。值得注意的是,对于纯galaxy输入($ \ rm frac_ {agn} = 0 $),$ \ rm frac_ {agn} $的准确性通过$ \ sim 100 $提高了,感谢Miri,$ \ sim。基于经验$ l _ {\ rm x} $ - $ l _ {\ rm6μm} $关系,模拟的Ceer Miri数据对AGN检测的MIRI数据对AGN检测略微敏感。像X射线观察一样,Miri也可以用来限制AGN积聚功率(准确性$ \ of 0.3 $ dex)。我们的工作表明,Miri将能够对恒星形成和AGN的MID-IR亮度施加强大的限制,从而促进对星系/AGN共同进化的研究。
The JWST MIRI instrument will revolutionize extragalactic astronomy with unprecedented sensitivity and angular resolution in mid-IR. Here, we assess the potential of MIRI photometry to constrain galaxy properties in the Cosmic Evolution Early Release Science (CEERS) survey. We derive estimated MIRI fluxes from the spectral energy distributions (SEDs) of real sources that fall in a planned MIRI pointing. We also obtain MIRI fluxes for hypothetical AGN-galaxy mixed models varying the AGN fractional contribution to the total IR luminosity ($\rm frac_{AGN}$). Based on these model fluxes, we simulate CEERS imaging (3.6-hour exposure) in 6 bands from F770W to F2100W using MIRISIM, and reduce these data using JWST PIPELINE. We perform PSF-matched photometry with TPHOT, and fit the source SEDs with X-CIGALE, simultaneously modeling photometric redshift and other physical properties. Adding the MIRI data, the accuracy of both redshift and $\rm frac_{AGN}$ is generally improved by factors of $\gtrsim 2$ for all sources at $z\lesssim 3$. Notably, for pure-galaxy inputs ($\rm frac_{AGN}=0$), the accuracy of $\rm frac_{AGN}$ is improved by $\sim 100$ times thanks to MIRI. The simulated CEERS MIRI data are slightly more sensitive to AGN detections than the deepest X-ray survey, based on the empirical $L_{\rm X}$-$L_{\rm 6μm}$ relation. Like X-ray observations, MIRI can also be used to constrain the AGN accretion power (accuracy $\approx 0.3$ dex). Our work demonstrates that MIRI will be able to place strong constraints on the mid-IR luminosities from star formation and AGN, and thereby facilitate studies of the galaxy/AGN co-evolution.