Cosmological hydrogen recombination: The effect of extremely high-n states
نویسندگان
چکیده
Calculations of cosmological hydrogen recombination are vital for the extraction of cosmological parameters from cosmic microwave background (CMB) observations, and for imposing constraints to inflation and reionization. The Planck mission and future experiments will make high precision measurements of CMB anisotropies at angular scales as small as ‘ 2500, necessitating a calculation of recombination with fractional accuracy of 10 . Recent work on recombination includes two-photon transitions from high excitation states and many radiative transfer effects. Modern recombination calculations separately follow angular momentum sublevels of the hydrogen atom to accurately treat nonequilibrium effects at late times (z < 900). The inclusion of extremely high-n (n * 100) states of hydrogen is then computationally challenging, preventing until now a determination of the maximum n needed to predict CMB anisotropy spectra with sufficient accuracy for Planck. Here, results from a new multilevel-atom code (RECSPARSE) are presented. For the first time, ‘‘forbidden’’ quadrupole transitions of hydrogen are included, but shown to be negligible. RECSPARSE is designed to quickly calculate recombination histories including extremely high-n states in hydrogen. Histories for a sequence of values as high as nmax 1⁄4 250 are computed, keeping track of all angular momentum sublevels and energy shells of the hydrogen atom separately. Use of an insufficiently high nmax value (e.g., nmax 1⁄4 64) leads to errors (e.g., 1:8 for Planck) in the predicted CMB power spectrum. Extrapolating errors, the resulting CMB anisotropy spectra are converged to 0:5 at Fisher-matrix level for nmax 1⁄4 128, in the purely radiative case.
منابع مشابه
Cosmological Recombination
In this thesis we focus on studying the physics of cosmological recombination and how the details of recombination affect the Cosmic Microwave Background (CMB) anisotropies. We present a detailed calculation of the spectral line distortions on the CMB spectrum arising from the Lyα and two-photon transitions in the recombination of hydrogen (H), as well as the corresponding lines from helium (He...
متن کاملCosmological hydrogen recombination : Ly n line feedback and continuum escape
We compute the corrections to the cosmological hydrogen recombination history due to delayed feedback of Lyman-series photons and the escape in the Lyman-continuum. The former process is expected to slightly delay recombination, while the latter should allow the medium to recombine a bit faster. It is shown that the subsequent feedback of released Lyman-n photons on the lower lying Lyman-(n − 1...
متن کاملThe effect of forbidden transitions on cosmological hydrogen and helium recombination
More than half of the atoms in the Universe recombined via forbidden transitions, so that accurate treatment of the forbidden channels is important in order to follow the cosmological recombination process with the level of precision required by future microwave anisotropy experiments. We perform a multi-level calculation of the recombination of hydrogen (H) and helium (He) with the addition of...
متن کاملFree-bound emission from cosmological hydrogen recombination
In this paper we compute the emission coming from the direct recombination of free electrons to a given shell (n ≥ 2) during the epoch of cosmological hydrogen recombination. This contribution leads to a total of one photon per recombined hydrogen atom and therefore a ∼ 30 − 88 % increase of the recombination spectrum within the frequency range 1 GHz ≤ ν ≤ 100 GHz. In particular the Balmer-cont...
متن کاملTwo-photon transitions in primordial hydrogen recombination
The subject of cosmological hydrogen recombination has received much attention recently because of its importance to predictions for and cosmological constraints from cosmic microwave background observations. While the central role of the two-photon decay 2s! 1s has been recognized for many decades, high-precision calculations require us to consider two-photon decays from the higher states ns, ...
متن کاملذخیره در منابع من
با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید
عنوان ژورنال:
دوره شماره
صفحات -
تاریخ انتشار 2010