论文标题

Fire-2宇宙学缩放模拟星系形成的公共数据发布

Public data release of the FIRE-2 cosmological zoom-in simulations of galaxy formation

论文作者

Wetzel, Andrew, Hayward, Christopher C., Sanderson, Robyn E., Ma, Xiangcheng, Angles-Alcazar, Daniel, Feldmann, Robert, Chan, T. K, El-Badry, Kareem, Wheeler, Coral, Garrison-Kimmel, Shea, Nikakhtar, Farnik, Panithanpaisal, Nondh, Arora, Arpit, Gurvich, Alexander B., Samuel, Jenna, Sameie, Omid, Pandya, Viraj, Hafen, Zachary, Hummels, Cameron, Loebman, Sarah, Boylan-Kolchin, Michael, Bullock, James S., Faucher-Giguere, Claude-Andre, Keres, Dusan, Quataert, Eliot, Hopkins, Philip F.

论文摘要

我们描述了来自http://flathub.flatironinstitute.org/fire/fire,从现实环境(FIRE)项目(FIRE)项目中介绍了GARAXY组的Fire-2宇宙缩放模拟模拟。 FIRE-2模拟实现了PARSEC规模的分辨率,以明确对多相星际介质进行建模,同时实现直接模型,以进行恒星进化和反馈,包括恒星风,核心崩溃和IA超新星,辐射压力,光电离电和光电暖气。我们从3个套件中释放了完整的快照。第一个包括20个模拟,这些模拟放大了14个银河系的星系,5个SMC/LMC质量星系和4个低质量星系,包括1个超质量;我们在Z = 0-10的范围内释放39个快照。第二个包含4个大型星系,Z = 1-10的19个快照。最后,一个高红移套件包含22个模拟,在Z = 5-10中有11个快照。每个模拟还包括几十个分辨率的下属(Satellite)(Satellite)(Satellite)Galaxies In ZOOM Int ZOOM INCORENACE。快照包括所有暗物质,气体和恒星颗粒的所有存储特性,包括恒星和气体的11个元素丰度,以及恒星颗粒的形成时间(年龄)。我们还释放伴随(子)光环目录,其中包括星系性能和成员星星颗粒。对于Z = 0的模拟,包括所有银河系质量星系,我们释放了所有恒星颗粒的地层坐标和“前坐标”标志,指针可以在快照,恒星流的目录中跟踪颗粒,以及用于卤素质量分布的多极基膨胀。我们描述了用于阅读和分析这些模拟的公开可用的Python软件包。

We describe a public data release of the FIRE-2 cosmological zoom-in simulations of galaxy formation, available at http://flathub.flatironinstitute.org/fire, from the Feedback In Realistic Environments (FIRE) project. FIRE-2 simulations achieve parsec-scale resolution to explicitly model the multi-phase interstellar medium while implementing direct models for stellar evolution and feedback, including stellar winds, core-collapse and Ia supernovae, radiation pressure, photoionization, and photoelectric heating. We release complete snapshots from 3 suites of simulations. The first comprises 20 simulations that zoom in on 14 Milky Way-mass galaxies, 5 SMC/LMC-mass galaxies, and 4 lower-mass galaxies including 1 ultra-faint; we release 39 snapshots across z = 0 - 10. The second comprises 4 massive galaxies, with 19 snapshots across z = 1 - 10. Finally, a high-redshift suite comprises 22 simulations, with 11 snapshots across z = 5 - 10. Each simulation also includes dozens of resolved lower-mass (satellite) galaxies in its zoom-in region. Snapshots include all stored properties for all dark matter, gas, and star particles, including 11 elemental abundances for stars and gas, and formation times (ages) of star particles. We also release accompanying (sub)halo catalogs, which include galaxy properties and member star particles. For the simulations to z = 0, including all Milky Way-mass galaxies, we release the formation coordinates and an "ex-situ" flag for all star particles, pointers to track particles across snapshots, catalogs of stellar streams, and multipole basis expansions for the halo mass distributions. We describe publicly available python packages for reading and analyzing these simulations.

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