Demonstrating the Feasibility of Line Intensity Mapping Using Mock Data of Galaxy Clustering from Simulations
arXiv:1104.4809 · doi:10.1088/1475-7516/2011/08/010
Abstract
Visbal & Loeb (2010) have shown that it is possible to measure the clustering of galaxies by cross correlating the cumulative emission from two different spectral lines which originate at the same redshift. Through this cross correlation, one can study galaxies which are too faint to be individually resolved. This technique, known as intensity mapping, is a promising probe of the global properties of high redshift galaxies. Here, we test the feasibility of such measurements with synthetic data generated from cosmological dark matter simulations. We use a simple prescription for associating galaxies with dark matter halos and create a realization of emitted radiation as a function of angular position and wavelength over a patch of the sky. This is then used to create synthetic data for two different hypothetical instruments, one aboard the Space Infrared Telescope for Cosmology and Astrophysics (SPICA) and another consisting of a pair of ground based radio telescopes designed to measure the CO(1-0) and CO(2-1) emission lines. We find that the line cross power spectrum can be measured accurately from the synthetic data with errors consistent with the analytical prediction of Visbal & Loeb (2010). Removal of astronomical backgrounds and masking bright line emission from foreground contaminating galaxies do not prevent accurate cross power spectrum measurements.
12 pages, 6 figures, Submitted to JCAP
References in corpus (5)
- UV Luminosity Functions at z~4, 5, and 6 from the HUDF and other Deep HST ACS Fields: Evolution and Star Formation History
- A Method for 21cm Power Spectrum Estimation in the Presence of Foregrounds
- Probing Reionization with Intensity Mapping of Molecular and Fine Structure Lines
- Intensity mapping of molecular gas during cosmic reionization
- Out-of-Core Hydrodynamic Simulations for Cosmological Applications
Cited by in corpus (41)
- 21-cm cosmology
- Semi-analytic forecasts for JWST - I. UV luminosity functions at z = 4 - 10
- Predictions for the CO emission of galaxies from a coupled simulation of galaxy formation and photon dominated regions
- Semi-analytic forecasts for JWST -- II. physical properties and scaling relations for galaxies at z = 4-10
- The effect of foreground subtraction on cosmological measurements from Intensity Mapping
- The kinetic Sunyaev-Zel'dovich signal from inhomogeneous reionization: a parameter space study
- COPSS II: The Molecular Gas Content of Ten Million Cubic Megaparsecs at
- Intensity mapping of [CII] from early galaxies
- Semi-analytic forecasts for JWST -- IV. Implications for cosmic reionization and LyC escape fraction
- Carbon Monoxide Intensity Mapping at Moderate Redshifts
- An Intensity Mapping Detection of Aggregate CO Line Emission at 3 mm
- Search for CII Emission on Cosmological Scales at Redshift Z~2.6
- Dissecting the high-z interstellar medium through intensity mapping cross-correlations
- Predictions and sensitivity forecasts for reionization-era [C II] line intensity mapping
- A Foreground Masking Strategy for [CII] Intensity Mapping Experiments Using Galaxies Selected by Stellar Mass and Redshift
- Multi-tracer intensity mapping: Cross-correlations, Line noise & Decorrelation
- Insights from probability distribution functions of intensity maps
- First Results from COPSS: The CO Power Spectrum Survey
- Measuring Galaxy Clustering and the Evolution of [CII] Mean Intensity with far-IR Line Intensity Mapping During 0.5 < z < 1.5
- Strategies to Detect Dark-Matter Decays with Line-Intensity Mapping
- Looking for Population III stars with He II line intensity mapping
- COMAP Early Science: V. Constraints and Forecasts at
- Studying high-z galaxies with [CII] intensity mapping
- Astrophysics & Cosmology from Line Intensity Mapping vs Galaxy Surveys
- Intensity Mapping in the Presence of Foregrounds and Correlated Continuum Emission
- Probing high-redshift galaxies with Ly intensity mapping
- Solar neutrino physics: Sensitivity to light dark matter particles
- ART: A 3D Parallel Multi-wavelength Radiative Transfer Code for Continuum and Atomic and Molecular Lines
- Forecasts and Statistical Insights for Line Intensity Mapping Cross-Correlations: A Case Study with 21cm x [CII]
- Extragalactic Science with the Experiment for Cryogenic Large-aperture Intensity Mapping
- Observational challenges in Ly-alpha intensity mapping
- On estimation of contamination from hydrogen cyanide in carbon monoxide line intensity mapping
- Mapping the Universe in HD
- Foreground Removal of CO Intensity Mapping Using Deep Learning
- Empowering line intensity mapping to study early galaxies
- Bayesian Multi-line Intensity Mapping
- Constraining Cosmology With the CMB LIM-Nulling Convergence
- HI Intensity Mapping with the MIGHTEE Survey: First Results of the HI Power Spectrum
- Constraining the Star Formation Rate using Joint CIB Continuum and [CII] Intensity Mapping
- Removal of interloper contamination to line-intensity maps using correlations with ancillary tracers of the large-scale structure
- Far-infrared lines hidden in archival deep multi-wavelength surveys: Limits on [CII]-158m at