A Fisher-matrix forecast finds the Hongmeng 21 cm global spectrum mission could probe DM annihilation cross sections down to ~1e-28 cm3/s, decay lifetimes to ~1e28 s, and PBH abundances to f_PBH ~ 1e-6, under ideal noise conditions.
A model of diffuse Galactic Radio Emission from 10 MHz to 100 GHz
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abstract
Understanding diffuse Galactic radio emission is interesting both in its own right and for minimizing foreground contamination of cosmological measurements. Cosmic Microwave Background experiments have focused on frequencies > 10 GHz, whereas 21 cm tomography of the high redshift universe will mainly focus on < 0.2 GHz, for which less is currently known about Galactic emission. Motivated by this, we present a global sky model derived from all publicly available total power large-area radio surveys, digitized with optical character recognition when necessary and compiled into a uniform format, as well as the new Villa Elisa data extending the 1.4 GHz map to the entire sky. We quantify statistical and systematic uncertainties in these surveys by comparing them with various global multi-frequency model fits. We find that a principal component based model with only three components can fit the 11 most accurate data sets (at 10, 22, 45 & 408 MHz and 1.4, 2.3, 23, 33, 41, 61, 94 GHz) to an accuracy around 1%-10% depending on frequency and sky region. Both our data compilation and our software returning a predicted all-sky map at any frequency from 10 MHz to 100 GHz are publicly available at http://space.mit.edu/home/angelica/gsm .
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Prospects for probing dark matter particles and primordial black holes with the Hongmeng mission using the 21 cm global spectrum at cosmic dawn
A Fisher-matrix forecast finds the Hongmeng 21 cm global spectrum mission could probe DM annihilation cross sections down to ~1e-28 cm3/s, decay lifetimes to ~1e28 s, and PBH abundances to f_PBH ~ 1e-6, under ideal noise conditions.