Broadband Intensity Tomography: Spectral Tagging of the Cosmic UV Background
arXiv:1810.00885 · doi:10.3847/1538-4357/ab1b35
Abstract
Cosmic photons can be efficiently collected by broadband intensity mapping but information on their emission redshift and frequency is largely lost. We introduce a technique to statistically recover these otherwise collapsed dimensions by exploiting information in spatial fluctuations and apply it to the Galaxy Evolution Explorer (GALEX) All Sky and Medium Imaging Surveys. By spatially cross-correlating photons in the GALEX far-UV (1500A) and near-UV (2300A) bands with a million spectroscopic objects in the Sloan Digital Sky Survey as a function of redshift, we robustly detect the redshift-dependent intensity of the UV background (UVB) modulated by its clustering bias up to . These measurements clearly reveal the imprints of UVB spectral features redshifting through the filters. Using a simple parameterization, we simultaneously fit a UVB emissivity and clustering bias factor to these observations and constrain the main spectral features of the UVB spectrum: (i) the Lyman break, (ii) the non-ionizing UV continuum, which agrees with the Haardt & Madau model but does not rely on any assumption regarding the nature of the sources, and (iii) the Ly emission, whose luminosity density is consistent with estimates of the combined galaxy and AGN contributions at . Because the technique probes the total background including low surface brightness emission, we place constraints on the amount of UV light originating from the diffuse intergalactic medium (IGM). Finally, the clustering bias of UV photons is found to be chromatic and evolving. Our frequency- and redshift-dependent UVB measurement delivers a summary statistic of the universe's net radiation output from stars, black holes, and the IGM combined.
Accepted for publication in the Astrophysical Journal
References in corpus (24)
- Cosmic Star Formation History
- The Subaru/XMM-Newton Deep Survey (SXDS). IV. Evolution of Lya Emitters from z=3.1 to 5.7 in the 1 deg^2 Field: Luminosity Functions and AGN
- The COS-Halos Survey: Physical Conditions and Baryonic Mass in the Low-Redshift Circumgalactic Medium
- The Cosmic Linear Anisotropy Solving System (CLASS) I: Overview
- Ly-alpha Emission-Line Galaxies at z = 3.1 in the Extended Chandra Deep Field South
- Calibrating Redshift Distributions Beyond Spectroscopic Limits with Cross-Correlations
- The DEEP2 Galaxy Redshift Survey: Color and Luminosity Dependence of Galaxy Clustering at z~1
- Are Dusty Galaxies Blue? Insights on UV Attenuation from Dust-Selected Galaxies
- Line-Intensity Mapping: 2017 Status Report
- Lyman alpha emitting galaxies at 0.2 < z < 0.35 from GALEX spectroscopy
- Lyman alpha Emitting Galaxies in the Nearby Universe
- Reconstructing Redshift Distributions with Cross-Correlations: Tests and an Optimized Recipe
- The-wiZZ: Clustering redshift estimation for everyone
- A Comprehensive Study of Ly Emission in the High-redshift Galaxy Population
- Clustering-based Redshift Estimation: Comparison to Spectroscopic Redshifts
- Extragalactic Imprints in Galactic Dust Maps
- GALEX Diffuse Observations of the Sky: The Data
- Inferring the Redshift Distribution of the Cosmic Infrared Background
- The Power Spectrum of the Lyman- Forest at z < 0.5
- The Mystery of the Cosmic Diffuse Ultraviolet Background Radiation
- Empirically Constrained Predictions for Metal-Line Emission from the Circumgalactic Medium
- A Faint Flux-Limited Lyman Alpha Emitter Sample at
- Clustering Properties of restframe UV selected galaxies II: Migration of Star Formation sites with cosmic time from GALEX and CFHTLS
- Clustering Properties of restframe UV selected galaxies I: the correlation length derived from GALEX data in the local Universe
Cited by in corpus (23)
- A Cosmic UV/X-ray Background Model Update
- Radiative cooling rates, ion fractions, molecule abundances and line emissivities including self-shielding and both local and metagalactic radiation fields
- The Cosmic Thermal History Probed by Sunyaev-Zeldovich Effect Tomography
- Imaging Systematics and Clustering of DESI Main Targets
- Cross-Correlation of Planck CMB Lensing with DESI-Like LRGs
- Cosmic Near-infrared Background Tomography with SPHEREx Using Galaxy Cross-correlations
- SILVERRUSH. IX. Lya Intensity Mapping with Star-Forming Galaxies at z=5.7 and 6.6: A Possible Detection of Extended Lya Emission at 100 comoving kpc around and beyond the Virial-Radius Scale of Galaxy Dark Matter Halos
- Cosmological constraints from weak lensing scattering transform using HSC Y1 data
- The PAU survey: Ly intensity mapping forecast
- Prospects for Observing the low-density Cosmic Web in Lyman-alpha Emission
- The star formation history in the last 10 billion years from CIB cross-correlations
- Probing the Diffuse Lyman-alpha Emission on Cosmological Scales: Lyα Emission Intensity Mapping Using the Complete SDSS-IV eBOSS Survey
- Testing the SZ-based tomographic approach to the thermal history of the universe with pressure-density cross-correlations: Insights from the Magneticum simulation
- Galaxy Cluster Contribution to the Diffuse Extragalactic Ultraviolet Background
- Excess Ultraviolet Emission at High Galactic Latitudes: A New Horizons View
- Probing the cosmic web in Ly emission over large scales: an Intensity Mapping forecast for DECaLS/BASS and DESI
- Forecasts for Broadband Intensity Mapping of the Ultraviolet-Optical Background with CASTOR and SPHEREx
- Upcoming searches for decaying dark matter with ULTRASAT ultraviolet maps
- Data-driven Cosmology from Three-dimensional Light Cones
- Constraining ultraviolet emission with the upcoming ULTRASAT satellite
- Lyman-alpha Filter Prototype to Enable Astronomical Photometry in the Lyman Ultraviolet
- Addressing Dipole Tension via Clustering in CDM and beyond
- Clustering redshifts with the 21cm-galaxy cross-bispectrum