On the Viability of Determining Galaxy Properties from Observations I: Star Formation Rates and Kinematics
arXiv:2204.11874 · doi:10.1093/mnras/stac1124
Abstract
We explore how observations relate to the physical properties of the emitting galaxies by post-processing a pair of merging galaxies from the cosmological, hydrodynamical simulation NewHorizon using LCARS (Light from Cloudy Added to RAMSES) to encode the physical properties of the simulated galaxy into H emission line. By carrying out mock observations and analysis on these data cubes we ascertain which physical properties of the galaxy will be recoverable with the HARMONI spectrograph on the European Extremely Large Telescope (ELT). We are able to estimate the galaxy's star formation rate and dynamical mass to a reasonable degree of accuracy, with values within a factor of and of the true value. The kinematic structure of the galaxy is also recovered in mock observations. Furthermore, we are able to recover radial profiles of the velocity dispersion and are therefore able to calculate how the dynamical ratio varies as a function of distance from the galaxy centre. Finally, we show that when calculated on galaxy scales the dynamical ratio does not always provide a reliable measure of a galaxy's stability against gravity or act as an indicator of a minor merger.
20 pages, 17 figures, Accepted for Publication in MNRAS, Comments and questions welcome
References in corpus (17)
- Cosmic Star Formation History
- Star Formation in AEGIS Field Galaxies since z=1.1 : The Dominance of Gradually Declining Star Formation, and the Main Sequence of Star-Forming Galaxies
- A Highly Consistent Framework for the Evolution of the Star-Forming "Main Sequence" from z~0-6
- Constraining the Low-Mass Slope of the Star Formation Sequence at 0.5<z<2.5
- The Herschel view of the dominant mode of galaxy growth from z=4 to the present day
- Feedback-regulated star formation and escape of LyC photons from mini-haloes during reionisation
- The KMOS^3D Survey: data release and final survey paper
- The KMOS Redshift One Spectroscopic Survey (KROSS): the origin of disk turbulence in z~0.9 star-forming galaxies
- The Galaxy Cluster Mid-Infrared Luminosity Function at 1.3<z<3.2
- The impact of stellar feedback on the density and velocity structure of the interstellar medium
- VLT-VIMOS integral field spectroscopy of luminous and ultraluminous infrared galaxies. I. The sample and first results
- 3D Spectroscopy with VLT/GIRAFFE - IV: Angular Momentum and Dynamical Support of Intermediate Redshift Galaxies
- Characterizing gravitational instability in turbulent multi-component galactic discs
- Predicting the Observability of Population III Stars with ELT-HARMONI via the Helium emission line
- Optical integral field spectroscopy of intermediate redshift infrared bright galaxies
- Physical Properties and Scaling Relations of Molecular Clouds: the Impact of Star Formation
- Simulating gas kinematic studies of high-redshift galaxies with the HARMONI Integral Field Spectrograph