IGM metal enrichment through dust sputtering
arXiv:astro-ph/0501147 · doi:10.1111/j.1365-2966.2005.08762.x
Abstract
We study the motion of dust grains into the Intergalactic Medium (IGM) around redshift z=3, to test the hypothesis that grains can efficiently pollute the gas with metals through sputtering. We use the results available in the literature for radiation-driven dust ejection from galaxies as initial conditions, and follow the motion onward. Via this mechanism, grains are ejected into the IGM with velocities >100 km/s; as they move supersonically, grains can be efficiently eroded by non-thermal sputtering. However, Coulomb and collisional drag forces effectively reduce the charged grain velocity. Up-to-date sputtering yields for graphite and silicate (olivine) grains have been derived using the code TRIM, for which we provide analytic fits. After training our method on a homogeneous density case, we analyze the grain motion and sputtering in the IGM density field as derived from a LambdaCDM cosmological simulation at z = 3.27. We found that only large (a >~ 0.1-um) grains can travel up to considerable distances (few times 100 kpc physical) before being stopped. Resulting metallicities show a well defined trend with overdensity delta. The maximum metallicities are reached for 10<delta<100 (corresponding to systems, in QSO absorption spectra, with 14.5 < log N_HI < 16). However the distribution of sputtered metals is very inhomogeneous, with only a small fraction of the IGM volume polluted by dust sputtering (filling factors of 18 per cent for Si and 6 per cent for C). For the adopted size distribution, grains are never completely destroyed; nevertheless, the extinction and gas photo-electric heating effects due to this population of intergalactic grains are well below current detection limits.
20 pages, 12 figures, MNRAS accepted
References in corpus (13)
- First Year Wilkinson Microwave Anisotropy Probe (WMAP) Observations: Determination of Cosmological Parameters
- Dust in the Early Universe: Dust Formation in the Ejecta of Population III Supernovae
- Metallicity of the intergalactic medium using pixel statistics. II. The distribution of metals as traced by C IV
- Low-Mass Relics of Early Star Formation
- The Distribution of Metallicity in the IGM at z~2.5: OVI and CIV Absorption in the Spectra of 7 QSOs
- Dust Formation in Very Massive Primordial Supernovae
- Metallicity of the intergalactic medium using pixel statistics: III. Silicon
- Metallicity of the intergalactic medium using pixel statistics: IV. Oxygen
- Amount of intergalactic dust: constraints from distant supernovae and thermal history of intergalactic medium
- The Lyalpha Forest Around High Redshift Galaxies
- Constraint on intergalactic dust from thermal history of intergalactic medium
- Modification of Dust Grain Structure by Sputtering
- The Proximity Effect Around High Redshift Galaxies
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- The origin of dust in galaxies revisited: the mechanism determining dust content
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- The Importance of Physical Models for Deriving Dust Masses and Grain Size Distributions in Supernova Ejecta I: Radiatively Heated Dust in the Crab Nebula
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- The Radiative Transport of Dust in Primordial Galaxies and Second-Generation Star Formation
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- Estimating dust attenuation from galactic spectra. II. Stellar and gas attenuation in star-forming and diffuse ionized gas regions in MaNGA
- Limits on non-canonical heating and turbulence in the intergalactic medium from the low redshift Lyman-alpha forest
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- The cosmic transparency measured with Type Ia supernovae: implications for intergalactic dust
- The nature of the red disk-like galaxies at high redshift: dust attenuation and intrinsically red stellar populations
- Distribution of Dust around Galaxies: An Analytic Model
- The impact of dust on the scaling properties of galaxy clusters
- Limits on Intergalactic Dust During Reionization
- Combined constraints on intergalactic dust from quasar colours and the soft X-ray background
- The Distortion of the Cosmic Microwave Background Spectrum Due to Intergalactic Dust
- Upper Limit on Dimming of Cosmological Sources by Intergalactic Grey Dust from the Soft X-ray Background
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- Dust removal timescale in galaxies across cosmic time
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