Ultrafast effective multilevel atom method for primordial hydrogen recombination

被引:85
作者
Ali-Haimoud, Yacine [1 ]
Hirata, Christopher M. [1 ]
机构
[1] CALTECH, Pasadena, CA 91125 USA
来源
PHYSICAL REVIEW D | 2010年 / 82卷 / 06期
基金
美国国家科学基金会;
关键词
COSMOLOGICAL HYDROGEN; 2-PHOTON DECAY; TRANSITIONS; DYNAMICS; LEVEL;
D O I
10.1103/PhysRevD.82.063521
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
Cosmological hydrogen recombination has recently been the subject of renewed attention because of its importance for predicting the power spectrum of cosmic microwave background anisotropies. It has become clear that it is necessary to account for a large number n greater than or similar to 100 of energy shells of the hydrogen atom, separately following the angular momentum substates in order to obtain sufficiently accurate recombination histories. However, the multilevel atom codes that follow the populations of all these levels are computationally expensive, limiting recent analyses to only a few points in parameter space. In this paper, we present a new method for solving the multilevel atom recombination problem, which splits the problem into a computationally expensive atomic physics component that is independent of the cosmology and an ultrafast cosmological evolution component. The atomic physics component follows the network of bound-bound and bound-free transitions among excited states and computes the resulting effective transition rates for the small set of "interface'' states radiatively connected to the ground state. The cosmological evolution component only follows the populations of the interface states. By pretabulating the effective rates, we can reduce the recurring cost of multilevel atom calculations by more than 5 orders of magnitude. The resulting code is fast enough for inclusion in Markov chain Monte Carlo parameter estimation algorithms. It does not yet include the radiative transfer or high-n two-photon processes considered in some recent papers. Further work on analytic treatments for these effects will be required in order to produce a recombination code usable for Planck data analysis.
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页数:12
相关论文
共 37 条
[21]   EFFECT OF PHYSICAL ASSUMPTIONS ON THE CALCULATION OF MICROWAVE BACKGROUND ANISOTROPIES [J].
HU, W ;
SCOTT, D ;
SUGIYAMA, N ;
WHITE, M .
PHYSICAL REVIEW D, 1995, 52 (10) :5498-5515
[22]   Rapid Heii→Hei recombination and radiation arising from this process [J].
Kholupenko, E. E. ;
Ivanchik, A. V. ;
Varshalovich, D. A. .
MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY, 2007, 378 (01) :L39-L43
[23]   Two-photon 2s⇆1s transitions during hydrogen recombination in the universe [J].
Kholupenko, E. E. ;
Ivanchik, A. V. .
ASTRONOMY LETTERS-A JOURNAL OF ASTRONOMY AND SPACE ASTROPHYSICS, 2006, 32 (12) :795-803
[24]   Effect of radiative feedbacks for resonant transitions during cosmological recombination [J].
Kholupenko, E. E. ;
Ivanchik, A. V. ;
Varshalovich, D. A. .
PHYSICAL REVIEW D, 2010, 81 (08)
[25]   The cosmic microwave background and the ionization history of the Universe [J].
Lewis, Antony ;
Weller, Jochen ;
Battye, Richard .
MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY, 2006, 373 (02) :561-570
[26]  
PEQUIGNOT D, 1991, ASTRON ASTROPHYS, V251, P680
[27]   Lines in the cosmic microwave background spectrum from the epoch of cosmological helium recombination [J].
Rubino-Martin, J. A. ;
Chluba, J. ;
Sunyaev, R. A. .
ASTRONOMY & ASTROPHYSICS, 2008, 485 (02) :377-393
[28]   Estimating the impact of recombination uncertainties on the cosmological parameter constraints from cosmic microwave background experiments [J].
Rubino-Martin, J. A. ;
Chluba, J. ;
Fendt, W. A. ;
Wandelt, B. D. .
MONTHLY NOTICES OF THE ROYAL ASTRONOMICAL SOCIETY, 2010, 403 (01) :439-452
[29]   A new calculation of the recombination epoch [J].
Seager, S ;
Sasselov, DD ;
Scott, D .
ASTROPHYSICAL JOURNAL, 1999, 523 (01) :L1-L5
[30]   How exactly did the universe become neutral? [J].
Seager, S ;
Sasselov, DD ;
Scott, D .
ASTROPHYSICAL JOURNAL SUPPLEMENT SERIES, 2000, 128 (02) :407-430