论文标题

用Spritz模拟红外天空

Simulating the infrared sky with a Spritz

论文作者

Bisigello, L., Gruppioni, C., Feltre, A., Calura, F., Pozzi, F., Vignali, C., Barchiesi, L., Rodighiero, G., Negrello, M.

论文摘要

银河形成和进化的当前流体动力学和半经验模拟在再现IR检测星系的数量密度方面困难。因此,需要一种多功能,现象学的新模拟工具来重现电流并预测IR波长下未来的观察结果。在这项工作中,我们从不同星系种群的Herschel红外光度函数开始生成模拟目录,以便以一致的方式考虑不同的星系和主动银河核。我们使用一组广泛的经验关系将光谱能量分布和物理特性(例如恒星质量,恒星形成率和AGN贡献)与每个模拟星系相关联。我们比较了所得的模拟星系,最多提取了Z $ = $ 10,并与广泛的观察关系相比。在ALL-Z(Spritz)模拟的红外选择目标的光谱测量实现将使我们能够以完全一致的方式模拟观察结果,以对具有光度功能以及低分辨率IR光谱的广泛当前和未来设施进行模拟观察结果,例如James Webb Space Telescope(JWSCOPE(JWST)或原始空间太空透视(James Webb Space Spacescope)(例如James Webb Space SpaceScope)派生的模拟目录包含星系和活跃的银河核,通过构造再现了观察到的IR星系数密度,但它也与观察到的从紫外线到Far-IR波长的数量计数一致,观察到的恒星质量函数,星形构型质量率,星形率和恒星质量平面和恒星质量平面和X-Ray的亮度功能。因此,提出的仿真是对当前和未来设施进行预测,特别是但不限于在IR波长下运行的设施的理想选择。 Spritz模拟将公开可用。

Current hydrodynamical and semi-empirical simulations of galaxy formation and evolution have difficulties in reproducing the number densities of IR-detected galaxies. Therefore, a versatile, phenomenological new simulation tool is necessary to reproduce current and predict future observations at IR wavelengths. In this work we generate simulated catalogues starting from the Herschel infrared luminosity functions of different galaxy populations, in order to consider in a consistent way different populations of galaxies and active galactic nuclei. We associated a spectral energy distribution and physical properties, such as stellar mass, star-formation-rate and AGN contribution, to each simulated galaxy using a broad set of empirical relations. We compare the resulting simulated galaxies, extracted up to z$=$10, with a broad set of observational relations. The Spectro-Photometric Realisations of Infrared-selected Targets at all-z (SPRITZ) simulation will allow us to obtain in a fully consistent way simulated observations for a broad set of current and future facilities with photometric capabilities as well as low-resolution IR spectroscopy, like the James Webb Space Telescope (JWST) or the Origin Space Telescope (OST). The derived simulated catalogue contains galaxies and active galactic nuclei that by construction reproduce the observed IR galaxy number density, but it is also in agreement with the observed number counts from UV to far-IR wavelengths, the observed stellar mass function, the star-formation-rate vs. stellar mass plane and the luminosity function from the radio to the X-ray. The proposed simulation is therefore ideal to make predictions for current and future facilities, in particular, but not limited to, those operating at IR wavelengths. The SPRITZ simulation will be publicly available.

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