Fiery Cores: Bursty and Smooth Star Formation Distributions across Galaxy Centers in Cosmological Zoom-in Simulations
Abstract
We present an analysis of the R ≾1.5 kpc core regions of seven simulated Milky Way-mass galaxies, from the FIRE-2 (Feedback in Realistic Environments) cosmological zoom-in simulation suite, for a finely sampled period (Δt = 2.2 Myr) of 22 Myr at z ≈ 0, and compare them with star formation rate (SFR) and gas surface density observations of the Milky Way's Central Molecular Zone (CMZ). Despite not being tuned to reproduce the detailed structure of the CMZ, we find that four of these galaxies are consistent with CMZ observations at some point during this 22 Myr period. The galaxies presented here are not homogeneous in their central structures, roughly dividing into two morphological classes; (a) several of the galaxies have very asymmetric gas and SFR distributions, with intense (compact) starbursts occurring over a period of roughly 10 Myr, and structures on highly eccentric orbits through the CMZ, whereas (b) others have smoother gas and SFR distributions, with only slowly varying SFRs over the period analyzed. In class (a) centers, the orbital motion of gas and star-forming complexes across small apertures (R ≾150 pc, analogously l < 1° in the CMZ observations) contributes as much to tracers of star formation/dense gas appearing in those apertures, as the internal evolution of those structures does. These asymmetric/bursty galactic centers can simultaneously match CMZ gas and SFR observations, demonstrating that time-varying star formation can explain the CMZ's low star formation efficiency.
Additional Information
© 2021 The American Astronomical Society. Received 2020 December 4; revised 2021 January 20; accepted 2021 January 21; published 2021 February 19. The authors would like to thank Alexander Gurvich, and an anonymous referee, for helpful comments that improved the manuscript. C.B. and H.P.H. gratefully acknowledge support from the National Science Foundation under Award No. 1816715. H.P.H. thanks the LSSTC Data Science Fellowship Program, which is funded by LSSTC, NSF Cybertraining Grant #1829740, the Brinson Foundation, and the Moore Foundation; his participation in the program has benefited this work. The Flatiron Institute is supported by the Simons Foundation. A.W. received support from NASA through ATP grant 80NSSC18K1097 and HST grants GO-14734, AR-15057, AR-15809, and GO-15902 from STScI; the Heising-Simons Foundation; and a Hellman Fellowship. Support for SRL was provided by NASA through Hubble Fellowship grant HST-JF2-51395.001-A awarded by the Space Telescope Science Institute, which is operated by the Association of Universities for Research in Astronomy, Inc., for NASA, under contract NAS5-26555. R.S.K. acknowledges financial support from the German Research Foundation (DFG) via the Collaborative Research Center (SFB 881, Project-ID 138713538) "The Milky Way System" (subprojects A1, B1, B2, and B8). He is also thankful for funding from the Heidelberg Cluster of Excellence STRUCTURES in the framework of Germany's Excellence Strategy (grant EXC-2181/1-390900948) and for funding from the European Research Council via the ERC Synergy Grant ECOGAL (grant 855130).Attached Files
Published - Orr_2021_ApJL_908_L31.pdf
Accepted Version - 2101.11034.pdf
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Additional details
- Eprint ID
- 108132
- Resolver ID
- CaltechAUTHORS:20210222-084450592
- NSF
- AST-1816715
- Large Synoptic Survey Telescope Corporation
- NSF
- OAC-1829740
- Brinson Foundation
- Gordon and Betty Moore Foundation
- Simons Foundation
- NASA
- 80NSSC18K1097
- NASA Hubble Fellowship
- GO-14734
- NASA Hubble Fellowship
- AR-15057
- NASA Hubble Fellowship
- AR-15809
- NASA Hubble Fellowship
- GO-15902
- Heising-Simons Foundation
- Hellman Fellowship
- NASA Hubble Fellowship
- HST-JF2-51395.001-A
- NASA
- NAS5-26555
- Deutsche Forschungsgemeinschaft (DFG)
- SFB 881
- Deutsche Forschungsgemeinschaft (DFG)
- EXC-2181/1-390900948
- European Research Council (ERC)
- 855130
- Created
-
2021-02-22Created from EPrint's datestamp field
- Updated
-
2021-11-16Created from EPrint's last_modified field
- Caltech groups
- Astronomy Department, TAPIR