Accurate modelling of the Lyman- coupling for the 21-cm signal, observability with NenuFAR and SKA
arXiv:2301.13178 · doi:10.1051/0004-6361/202244722
Abstract
The measurement of the cm signal from the Cosmic Dawn is a major goal for several existing and upcoming radio interferometers such as NenuFAR and the SKA. During this era before the beginning of the Epoch of Reionization, the signal is more difficult to observe due to brighter foregrounds but reveals additional information on the underlying astrophysical processes encoded in the spatial fluctuations of the spin temperature of hydrogen. To interpret future measurements, controlling the level of accuracy of the Lyman- flux modelling is mandatory. In this work, we evaluate the impact of various approximations that exist in the main fast modelling approach compared to the results of a costly full radiative transfer simulation. The fast SPINTER code, presented in this work, computes the Lyman- flux including the effect of wing scatterings for an inhomogeneous emissivity field, but assuming an otherwise homogeneous expanding universe. The LICORICE code computes the full radiative transfer in the Lyman- line without any substantial approximation. We find that the difference between homogeneous and inhomogeneous gas density and temperature is very small for the computed flux. On the contrary, neglecting the effect of gas velocities produces a significant change in the computed flux. We identify the causes (mainly Doppler shifts due to velocity gradients) and quantify the magnitude of the effect in both an idealised setup and a realistic cosmological situation. We find that the amplitude of the effect, up to a factor of on the cm signal power spectrum on some scales (depending on both other model parameters and the redshift), can be easily discriminated with an SKA-like survey and already be approached, particularly for exotic signals, by the ongoing NenuFAR Cosmic Dawn Key Science Program.
14 pages, accepted for publication in A&A
References in corpus (11)
- Improved upper limits on the 21-cm signal power spectrum of neutral hydrogen at from LOFAR
- The Global 21 Centimeter Background from High Redshifts
- 21CMMC: an MCMC analysis tool enabling astrophysical parameter studies of the cosmic 21 cm signal
- Signature of Excess Radio Background in the 21-cm Global Signal and Power Spectrum
- Cosmic Reionization and the 21-cm signal: Comparison between an analytical model and a simulation
- The simulated 21 cm signal during the epoch of reionization : full modeling of the Ly-alpha pumping
- Emulation of reionization simulations for Bayesian inference of astrophysics parameters using neural networks
- The Scattering of Lyman-series Photons in the Intergalactic Medium
- A new MWA limit on the 21 cm Power Spectrum at Redshifts 13 17
- 21SSD: a public database of simulated 21-cm signals from the epoch of reionization
- Radiative Transfer Effect on Ultraviolet Pumping of the 21cm Line in the High Redshift Universe