Precision Spectrophotometry at the Level of 0.1%
arXiv:1107.5040 · doi:10.1088/0004-6256/142/5/153
Abstract
Accurate relative spectrophotometry is critical for many science applications. Small wavelength scale residuals in the flux calibration can significantly impact the measurements of weak emission and absorption features in the spectra. Using Sloan Digital Sky Survey data, we demonstrate that the average spectra of carefully selected red-sequence galaxies can be used as a spectroscopic standard to improve the relative spectrophotometry precision to 0.1% on small wavelength scales (from a few to hundreds of Angstroms). We achieve this precision by comparing stacked spectra across tiny redshift intervals. The redshift intervals must be small enough that any systematic stellar population evolution is minimized and less than the spectrophotometric uncertainty. This purely empirical technique does not require any theoretical knowledge of true galaxy spectra. It can be applied to all large spectroscopic galaxy redshift surveys that sample a large number of galaxies in a uniform population.
7 pages, 6 figures; submitted to AJ. The derived correction vector is provided in the ancillary data file. v2: minor corrections matching the accepted version
References in corpus (2)
Cited by in corpus (29)
- The Baryon Oscillation Spectroscopic Survey of SDSS-III
- Relations Between Central Black Hole Mass and Total Galaxy Stellar Mass in the Local Universe
- Dwarf Galaxies with Optical Signatures of Active Massive Black Holes
- A Stellar Mass Threshold for Quenching of Field Galaxies
- The Nature of LINER-like Emission in Red Galaxies
- A redshift-independent efficiency model: star formation and stellar masses in dark matter halos at z>4
- The JHU-SDSS metal absorption line catalog: redshift evolution and properties of Mg II absorbers
- Identifying AGNs in low-mass galaxies via long-term optical variability
- A Study in Blue: The Baryon Content of Isolated Low Mass Galaxies
- A search for optical AGN variability in 35,000 low-mass galaxies with the Palomar Transient Factory
- The Stellar Halos of Massive Elliptical Galaxies II: Detailed Abundance Ratios at Large Radius
- Mid-Infrared Colors of Dwarf Galaxies: Young Starbursts Mimicking Active Galactic Nuclei
- Exploring the diffuse interstellar bands with the Sloan Digital Sky Survey
- The Stellar Halos of Massive Elliptical Galaxies
- On the Star Formation Properties of Void Galaxies
- AGN All the Way Down? AGN-like Line Ratios are Common In the Lowest-Mass Isolated Quiescent Galaxies
- Diffuse Gas in Retired Galaxies: Nebular Emission Templates and Constraints on the Sources of Ionization
- Diffuse Gas in Galaxies Sheds New Light on the Origin of Type Ia Supernovae
- RESOLVE and ECO: Finding Low-Metallicity Dwarf AGN Candidates Using Optimized Emission-Line Diagnostics
- Constraining Photoionization Models With a Reprojected Optical Diagnostic Diagram
- IQ Collaboratory II: The Quiescent Fraction of Isolated, Low Mass Galaxies Across Simulations and Observations
- IQ-Collaboratory 1.1: the Star-Forming Sequence of Simulated Central Galaxies
- Correlation between the gas-phase metallicity and ionization parameter in extragalactic HII regions
- Li in Open Clusters: Cool Dwarfs in the Young, Subsolar Metallicity Cluster M35 (NGC 2168)
- Shocks or Photoionization: Direct Temperature Measurements of the Low-Ionization Gas in Quiescent Galaxies
- Environments of dwarf galaxies with optical AGN characteristics
- Nitrogen-to-Oxygen Abundance Ratio Variation In Quiescent Galaxies
- On the limitations of statistical absorption studies with the Sloan Digital Sky Surveys I--III
- Nebular Dust Attenuation with the Balmer and Paschen Lines based on the MaNGA Survey