The Orion-Taurus ridge: a synchrotron radio loop at the edge of the Orion-Eridanus superbubble
arXiv:2308.16663 · doi:10.1051/0004-6361/202347283
Abstract
Large-scale synchrotron loops are recognized as the main source of diffuse radio-continuum emission in the Galaxy at intermediate and high Galactic latitudes. Their origin, however, remains rather unexplained. Using a combination of multi-frequency data in the radio band of total and polarized intensities, for the first time in this letter, we associate one arc -- hereafter, the Orion-Taurus ridge -- with the wall of the most prominent stellar-feedback blown shell in the Solar neighborhood, namely the Orion-Eridanus superbubble. We traced the Orion-Taurus ridge using 3D maps of interstellar dust extinction and column-density maps of molecular gas, . We found the Orion-Taurus ridge at a distance of 400\,pc, with a plane-of-the-sky extent of \,pc. Its median value is cm. Thanks to the broadband observations below 100 MHz of the Long Wavelength Array, we also computed the low-frequency spectral-index map of synchrotron emissivity, , in the Orion-Taurus ridge. We found a flat distribution of with a median value of that we interpreted in terms of depletion of low-energy ( GeV) cosmic-ray electrons in recent supernova remnants ( - yrs). Our results are consistent with plane-of-the-sky magnetic-field strengths in the Orion-Taurus ridge larger than a few tens of G (G). We report the first detection of diffuse synchrotron emission from cold-neutral, partly molecular, gas in the surroundings of the Orion-Eridanus superbubble. This observation opens a new perspective to study the multiphase and magnetized interstellar medium with the advent of future high-sensitivity radio facilities, such as the C-Band All-Sky Survey and the Square Kilometre Array.
Accepted for publication in Astronomy & Astrophysics
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