On recent SFR calibrations and the constant SFR approximation
arXiv:1602.03891 · doi:10.1051/0004-6361/201528056
Abstract
Star Formation Rate (SFR) inferences are based in the so-called constant SFR approximation, where synthesis models are require to provide a calibration; we aims to study the key points of such approximation to produce accurate SFR inferences. We use the intrinsic algebra used in synthesis models, and we explore how SFR can be inferred from the integrated light without any assumption about the underling Star Formation history (SFH). We show that the constant SFR approximation is actually a simplified expression of more deeper characteristics of synthesis models: It is a characterization of the evolution of single stellar populations (SSPs), acting the SSPs as sensitivity curve over different measures of the SFH can be obtained. As results, we find that (1) the best age to calibrate SFR indices is the age of the observed system (i.e. about 13Gyr for z=0 systems); (2) constant SFR and steady-state luminosities are not requirements to calibrate the SFR; (3) it is not possible to define a SFR single time scale over which the recent SFH is averaged, and we suggest to use typical SFR indices (ionizing flux, UV fluxes) together with no typical ones (optical/IR fluxes) to correct the SFR from the contribution of the old component of the SFH, we show how to use galaxy colors to quote age ranges where the recent component of the SFH is stronger/softer than the older component. Particular values of SFR calibrations are (almost) not affect by this work, but the meaning of what is obtained by SFR inferences does. In our framework, results as the correlation of SFR time scales with galaxy colors, or the sensitivity of different SFR indices to sort and long scale variations in the SFH, fit naturally. In addition, the present framework provides a theoretical guide-line to optimize the available information from data/numerical experiments to improve the accuracy of SFR inferences.
A&A accepted, 13 pages, 4 Figures
References in corpus (11)
- Cosmic Star Formation History
- Theory of Star Formation
- The propagation of uncertainties in stellar population synthesis modeling I: The relevance of uncertain aspects of stellar evolution and the IMF to the derived physical properties of galaxies
- The Effects of Stellar Rotation. II. A Comprehensive Set of Starburst99 Models
- Evolution of asymptotic giant branch stars I. Updated synthetic TP-AGB models and their basic calibration
- GALEV evolutionary synthesis models - I. Code, input physics and web-interface
- A Large Stellar Evolution Database for Population Synthesis Studies. III. Inclusion of the full Asymptotic Giant Branch phase and Web tools for stellar population analyses
- A large stellar evolution database for population synthesis studies. IV. Integrated properties and spectra
- Impact of star formation history on the measurement of star formation rates
- Star Formation Across the W3 Complex
- The Panchromatic Hubble Andromeda Treasury. VI. The reliability of far-ultraviolet flux as a star formation tracer on sub-kpc scales
Cited by in corpus (7)
- Sub-galactic scaling relations between X-ray luminosity, star-formation rate, and stellar mass
- Star-formation rate and stellar mass calibrations based on infrared photometry and their dependence on stellar population age and extinction
- The Star Formation Reference Survey-V: the effect of extinction, stellar mass, metallicity, and nuclear activity on star-formation rates based on H emission
- The VLA Frontier Field Survey: A Comparison of the Radio and UV/optical size of star-forming galaxies
- The OTELO survey: the star formation rate evolution of low-mass galaxies
- The OTELO survey: Revealing a population of low-luminosity current/active star-forming galaxies at z
- Star formation at z0.9 from the OTELO survey: A comprehensive view combining deep optical spectroscopy and infrared data