Measuring the Cosmic Equation of State with Counts of Galaxies II: Error Budget for the DEEP2 Redshift Survey
arXiv:astro-ph/0109130 · doi:10.1086/324148
Abstract
In a previous paper, we described a new variant on the classical dN/dz test which could be performed using upcoming redshift surveys. By observing the velocity function of galaxies rather than their luminosity function, it is possible to avoid many of the uncertainties of galaxy evolution while employing a directly measurable quantity. We previously assumed that counting statistics would dominate the errors in this method. Here, we present the results of including cosmic variance and determine the impact of systematic effects on application of this test to the upcoming DEEP2 Redshift Survey. For DEEP2, cosmic variance should yield errors roughly twice those predicted from Poisson statistics. Through Monte Carlo simulations we find that if the functional form, but not the strength, of any of the major systematic effects (baryonic infall, velocity errors, and incompleteness) is known, the systematic may successfully be corrected for using the observed velocity function, leaving a much smaller residual error. The total uncertainty from systematics is comparable to that from cosmic variance, but correlated amongst redshift bins. We find that DEEP2 can provide a much more precise measurement of the cosmic equation of state parameter w than any available today, albeit weaker than some other proposed tests.
10 pages plus 11 figures and 2 tables; approved for publication in the Astrophysical Journal
References in corpus (1)
Cited by in corpus (53)
- CANDELS: The Cosmic Assembly Near-infrared Deep Extragalactic Legacy Survey
- Galaxy Luminosity Functions to z~1: DEEP2 vs. COMBO-17 and Implications for Red Galaxy Formation
- The DEEP2 Galaxy Redshift Survey: Design, Observations, Data Reduction, and Redshifts
- The Evolution of the Galaxy Rest-Frame Ultraviolet Luminosity Function Over the First Two Billion Years
- The DEEP2 Galaxy Redshift Survey: The Galaxy Luminosity Function to z ~ 1
- Cosmic Variance and Its Effect on the Luminosity Function Determination in Deep High z Surveys
- The Evolution of the Galaxy Stellar Mass Function at z= 4-8: A Steepening Low-mass-end Slope with Increasing Redshift
- Cosmic Variance in the Great Observatories Origins Deep Survey
- A Cosmic Variance Cookbook
- The mass evolution of the first galaxies: stellar mass functions and star formation rates at in the CANDELS GOODS-South field
- Calibrating Redshift Distributions Beyond Spectroscopic Limits with Cross-Correlations
- A model independent approach to the dark energy equation of state
- The DEEP2 Galaxy Redshift Survey: Clustering of Galaxies in Early Data
- Quantifying cosmic variance
- Improved Cosmological Constraints from Gravitational Lens Statistics
- The DEEP2 galaxy redshift survey: the evolution of the blue fraction in groups and the field
- Observational Searches for Galaxies at z > 6
- The VIMOS Public Extragalactic Redshift Survey (VIPERS). A precise measurement of the galaxy stellar mass function and the abundance of massive galaxies at redshifts 0.5<z<1.3
- Prospects for Determining the Equation of State of the Dark Energy: What can be Learned from Multiple Observables?
- The Evolution of the Optical and Near-Infrared Galaxy Luminosity Functions and Luminosity Densities to z~2
- Spectroscopic Needs for Imaging Dark Energy Experiments: Photometric Redshift Training and Calibration
- An improved model for the formation times of dark matter haloes
- The Bulge-Disk Decomposed Evolution of Massive Galaxies at 1<z<3 in CANDELS
- Overdensities of Y-dropout Galaxies from the Brightest-of-Reionizing Galaxies Survey: A Candidate Protocluster at Redshift z~8
- The DEEP2 Galaxy Redshift Survey: Clustering Dependence on Galaxy Stellar Mass and Star Formation Rate at z~1
- The Star Formation and Extinction Co-Evolution of UV-Selected Galaxies over 0.05<z<1.2
- The Local Galaxy 8 micron Luminosity Function
- Probing the Bright End of the Rest-Frame Ultraviolet Luminosity Function at z = 8-10 with Hubble Pure-Parallel Imaging
- On the Degeneracy Inherent in Observational Determination of the Dark Energy Equation of State
- GALLUMI: A Galaxy Luminosity Function Pipeline for Cosmology and Astrophysics
- Photometric Redshift Calibration Requirements for WFIRST Weak Lensing Cosmology: Predictions from CANDELS
- Estimating Luminosity Function Constraints from High-Redshift Galaxy Surveys
- The VIMOS VLT Deep Survey: the group catalogue
- Stochastic bias of colour-selected BAO tracers by joint clustering-weak lensing analysis
- Deep Keck u-band imaging of the Hubble Ultra Deep Field: A catalog of z~3 Lyman Break Galaxies
- A Flexible Analytic Model of Cosmic Variance in the First Billion Years
- The DEEP2 Galaxy Redshift Survey: The Red Sequence AGN Fraction and its Environment and Redshift Dependence
- Multi-Wavelength Study of a Complete IRAC 3.6micron-Selected Galaxy Sample: a Fair Census of Red and Blue Populations at Redshifts 0.4-1
- The Giant Metrewave Radio Telescope Cold-HI AT Survey
- The environment and host haloes of the brightest z~6 Lyman-break galaxies
- The ALHAMBRA survey : band luminosity function of quiescent and star-forming galaxies at by PDF analysis
- Nearby Galaxies in the 2micron All Sky Survey I. K-band Luminosity Functions
- Distortion of the luminosity function of high-redshift galaxies by gravitational lensing
- AEGIS: Chandra Observation of DEEP2 Galaxy Groups and Clusters
- The Califa and Hipass velocity function for all morphological galaxy types
- Lyman-alpha Emitters in Ionized Bubbles: Constraining the Environment and Ionized Fraction
- The ALHAMBRA survey : Estimation of the clustering signal encoded in the cosmic variance
- X-ray cluster cosmology
- Galaxy-galaxy and galaxy-cluster lensing with the SDSS and FIRST surveys
- First Light and Reionisation Epoch Simulations (FLARES) X: Environmental Galaxy Bias and Survey Variance at High Redshift
- The miniJPAS survey. Evolution of the luminosity and stellar mass functions of galaxies up to
- Sample Variance in Cosmological Observations with a Narrow Field-of-View
- High redshift galaxies in the ALHAMBRA survey: II. strengthening the evidence of bright-end excess in UV luminosity functions at 2.5 <= z <= 4.5 by PDF analysis