Filament Hunting: Integrated HI 21cm Emission From Filaments Inferred by Galaxy Surveys
arXiv:1702.07725 · doi:10.1093/mnras/stx509
Abstract
Large scale filaments, with lengths that can reach tens of Mpc, are the most prominent features in the cosmic web. These filaments have only been observed indirectly through the positions of galaxies in large galaxy surveys or through absorption features in the spectra of high redshift sources. In this study we propose to go one step further and directly detect intergalactic medium filaments through their emission in the HI 21cm line. We make use of high resolution cosmological simulations to estimate the intensity of this emission in low redshift filaments and use it to make predictions for the direct detectability of specific filaments previously inferred from galaxy surveys, in particular the Sloan Digital Sky Survey. Given the expected signal of these filaments our study shows that HI emission from large filaments can be observed by current and next generation radio telescopes. We estimate that gas in filaments of length 15 Mpc with relatively small inclinations to the line of sight () can be observed in hours with telescopes such as GMRT or EVLA, potentially providing large improvements over our knowledge of the astrophysical properties of these filaments. Due to their large field of view and sufficiently long integration times, upcoming HI surveys with the Apertif and ASKAP instruments will be able to detect large filaments independently of their orientation and curvature. Furthermore, our estimates indicate that a more powerful future radio telescope like SKA-2 can be used to map most of these filaments, which will allow them to be used as a strong cosmological probe.
16 pages, 11 figures, Accepted for publication in MNRAS
References in corpus (17)
- The EAGLE project: Simulating the evolution and assembly of galaxies and their environments
- Cosmology at Low Frequencies: The 21 cm Transition and the High-Redshift Universe
- An Observational Determination of the Bolometric Quasar Luminosity Function
- Measurement of 21 cm brightness fluctuations at z ~ 0.8 in cross-correlation
- Lyman Alpha Emitting Galaxies as a Probe of Reionization
- The Neutral Hydrogen Cosmological Mass Density at z=5
- The EAGLE simulations: atomic hydrogen associated with galaxies
- Mapping Neutral Hydrogen During Reionization with the Ly-alpha Emission from Quasar Ionization Fronts
- Spin Exchange Rates in Electron-Hydrogen Collisions
- Tomography of the intergalactic medium with Ly-alpha forests in close QSO pairs
- Spin Exchange Rates in Proton-Hydrogen Collisions
- Constraints on the evolution of the relationship between HI mass and halo mass in the last 12 Gyr
- Measuring the Primordial Deuterium Abundance During the Cosmic Dark Ages
- Color-Magnitude Distribution of Face-on Nearby Galaxies in SDSS DR7
- Probing large scale filaments with HI and HeII
- High resolution spectroscopy of the three dimensional cosmic web with close QSO groups
- A ~6 Mpc overdensity at z = 2.7 detected along a pair of quasar sight lines: filament or protocluster?
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- Hot WHIM counterparts of FUV OVI absorbers: Evidence in the line-of-sight towards quasar 3C 273
- Detecting the neutral IGM in filaments with the SKA
- Searching for HI imprints in cosmic web filaments with 21-cm intensity mapping
- The HI Structure of the Local Volume Dwarf Galaxy Pisces A
- Continuous Filament Network of the Local Universe
- A 15 Mpc rotating galaxy filament at redshift z = 0.032
- FAST drift scan survey for HI intensity mapping: simulation on hunting HI filament with pairwise stacking