The Epoch of IGM heating by early sources of X-rays
Marius Berge Eide (1), Luca Graziani (1,2,3), Benedetta Ciardi (1), Yu, Feng (4), Koki Kakiichi (5,1), Tiziana di Matteo (6) ((1) Max Planck, Institute for Astrophysics, (2) INAF / Osservatorio Astronomico di Roma, (3), Scuola Normale Superiore Pisa

TL;DR
This study models the impact of various high-redshift sources like stars, X-ray binaries, ISM bremsstrahlung, and black holes on the thermal and ionization history of the IGM during the Epoch of Heating, using advanced simulations.
Contribution
It provides a detailed simulation-based analysis of how different early sources influence IGM heating and ionization, highlighting the dominant role of stars and X-ray binaries.
Findings
Stars fully ionize the IGM morphology.
X-ray binaries enable efficient heating and ionization.
Black holes contribute minimally to ionization and heating.
Abstract
Observations of the 21 cm line from neutral hydrogen indicate that an Epoch of Heating (EoH) might have preceded the later Epoch of Reionization (EoR). Here we study the effects on the ionization state and the thermal history of the Intergalactic Medium (IGM) during the EoH induced by different assumptions on ionizing sources in the high redshift Universe: (i) stars, (ii) X-ray binaries (XRBs), (iii) thermal bremsstrahlung of the hot Interstellar Medium (ISM), and (iv) accreting nuclear black holes (BHs). To this aim, we post-process outputs from the ( cMpc) hydrodynamical simulation MassiveBlack-II with the cosmological 3D radiative transfer code CRASH, which follows the propagation of UV and X-ray photons, computing the thermal and ionization state of hydrogen and helium through the EoH. We find that stars determine the fully ionized morphology of the IGM, while the…
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