Ionizing radiation from hydrogen recombination strongly suppresses the lithium scattering signature in the CMB
arXiv:astro-ph/0507106 · doi:10.1103/PhysRevD.72.083002
Abstract
It has been suggested that secondary CMB anisotropies generated by neutral lithium could open a new observational window into the universe around the redshift z ~ 400, and permit a determination of the primordial lithium abundance. The effect is due to resonant scattering in the allowed LiI doublet (2s ^2S_{1/2} - 2p ^2P_{1/2,3/2}), so its observability depends on the formation history of neutral lithium. Here we show that the ultraviolet photons produced during hydrogen recombination are sufficient to keep lithium in the LiII ionization stage in the relevant redshift range and suppress the neutral fraction by ~3 orders of magnitude from previous calculations, making the lithium signature unobservable.
9 pages, 6 figures
References in corpus (6)
- Wilkinson Microwave Anisotropy Probe (WMAP) First Year Observations: TE Polarization
- 21 Centimeter Fluctuations from Cosmic Gas at High Redshifts
- Measuring the Small-Scale Power Spectrum of Cosmic Density Fluctuations Through 21 cm Tomography Prior to the Epoch of Structure Formation
- Statistical Probes of Reionization With 21 cm Tomography
- Redshifted 21 cm Emission From the Pre-Reionization Era I. Mean Signal and Linear Fluctuations
- The Impact of Small-Scale Structure on Cosmological Ionization Fronts and Reionization
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