Comparison of Cross-Correlation Methods for Line Intensity Mapping
arXiv:2603.13218 · doi:10.1093/mnras/stag998
Abstract
Line intensity mapping (LIM) is a technique for producing 3D maps of the Universe by scanning the sky with a spectrometer sensitive to a range of wavelengths corresponding to the redshifted spectral lines of atoms or molecules, such as hydrogen or carbon, commonly found in galaxies and the diffuse media around them. While LIM experiments have successfully detected the 21 cm line of neutral hydrogen, other lines that reveal large-scale structure or astrophysical processes remain undetected. Many LIM experiments are in development or are underway to fill this gap, but will likely suffer from contamination from systematics, like Galactic foregrounds, or noise. Cross-correlation techniques offer the smoothest route for making detections and constraining astrophysical processes in this regime. In this work, we apply three cross-correlation techniques (stacking, the conditional voxel intensity distribution (CVID), and the cross power spectrum) to simulated LIM maps produced using [CII] luminosity models for a pathfinder LIM experiment (EXCLAIM). We find that these cross-correlation techniques allow for mean detection of the target signal line ([CII]) at redshifts 2.5-3.5 at the 3.9, 3.7, and 4.2 level, respectively, and offer moderate constraints on the line emission model. Under a futuristic scenario with reduced noise, the techniques improve substantially, with detections at the 35.4, 76.6, and 38.8 levels and percent-level constraints. Each technique offers unique information, with the strongest constraints achieved by using the three techniques in combination.
18 pages, 16 figures, published in MNRAS
References in corpus (44)
- The Seventh Data Release of the Sloan Digital Sky Survey
- The Global Schmidt Law in Star Forming Galaxies
- Cosmic Star Formation History
- The Eleventh and Twelfth Data Releases of the Sloan Digital Sky Survey: Final Data from SDSS-III
- The Average Star Formation Histories of Galaxies in Dark Matter Halos from z=0-8
- The Sixteenth Data Release of the Sloan Digital Sky Surveys: First Release from the APOGEE-2 Southern Survey and Full Release of eBOSS Spectra
- Cool Gas in High Redshift Galaxies
- The applicability of FIR fine-structure lines as Star Formation Rate tracers over wide ranges of metallicities and galaxy types
- The CHIME Fast Radio Burst Project: System Overview
- The Python Sky Model: software for simulating the Galactic microwave sky
- Target Selection and Validation of DESI Quasars
- [CII] 158 m Emission as a Star Formation Tracer
- Lack of clustering in low-redshift 21-cm intensity maps cross-correlated with 2dF galaxy densities
- Tracing the reionization epoch with ALMA: [CII] emission in z~7 galaxies
- L'CO/LFIR Relations with CO Rotational Ladders of Galaxies Across the Herschel SPIRE Archive
- Connecting CO Intensity Mapping to Molecular Gas and Star Formation in the Epoch of Galaxy Assembly
- HI constraints from the cross-correlation of eBOSS galaxies and Green Bank Telescope intensity maps
- ALMA Spectroscopic Survey in the Hubble Ultra Deep Field: Search for [CII] line and dust emission in 6<z<8 galaxies
- CCAT-prime Collaboration: Science Goals and Forecasts with Prime-Cam on the Fred Young Submillimeter Telescope
- The mass-Peak Patch algorithm for fast generation of deep all-sky dark matter halo catalogues and its N-Body validation
- Line-Intensity Mapping: Theory Review
- The ALMA Spectroscopic Survey in the HUDF: the molecular gas content of galaxies and tensions with IllustrisTNG and the Santa Cruz SAM
- An Intensity Mapping Detection of Aggregate CO Line Emission at 3 mm
- COMAP Early Science: I. Overview
- Constraining the evolution of CII intensity through the end stages of reionization
- HETDEX Public Source Catalog 1: 220K Sources Including Over 50K Lyman Alpha Emitters from an Untargeted Wide-area Spectroscopic Survey
- An empirical representation of a physical model for the ISM [CII], CO, and [CI] emission at redshift
- Black hole jets on the scale of the Cosmic Web
- Clustering of quasars in the First Year of the SDSS-IV eBOSS survey: Interpretation and halo occupation distribution
- Evidence for CII diffuse line emission at redshift
- Improved 21 cm Epoch Of Reionization Power Spectrum Measurements with a Hybrid Foreground Subtraction and Avoidance Technique
- COMAP Early Science: V. Constraints and Forecasts at
- SPT-SLIM: A Line Intensity Mapping Pathfinder for the South Pole Telescope
- Intensity Mapping in the Presence of Foregrounds and Correlated Continuum Emission
- Determination of the Cosmic Infrared Background from COBE/FIRAS and Planck HFI Observations
- Canceling out intensity mapping foregrounds
- Full-sky Models of Galactic Microwave Emission and Polarization at Sub-arcminute Scales for the Python Sky Model
- Extragalactic Science with the Experiment for Cryogenic Large-aperture Intensity Mapping
- The Terahertz Intensity Mapper (TIM): a Next-Generation Experiment for Galaxy Evolution Studies
- Emission-line Stacking of 21cm Intensity Maps with MeerKLASS: Inference Pipeline and Application to the L-band Deep-field Data
- μ-Spec Spectrometers for the EXCLAIM Instrument
- Monster radio jet (>66 kpc) observed in quasar at z5
- Three-Dimensional Stacking as a Line Intensity Mapping Statistic
- Detection of the Cosmological 21 cm Signal in Auto-correlation at z ~ 1 with the Canadian Hydrogen Intensity Mapping Experiment