Loop I/NPS morphology predictions in the ultralong-wavelength band
Abstract
Loop I/North Polar Spur (NPS) is the giant arc structure above the Galactic plane observed at radio wavelengths ( GHz). There has been long-standing debate about its origin. While many people believe that it black consists of nearby supernova remnants (SNRs), some others consider it as a giant bubble close to the Galactic Center (GC), associated with the Fermi Bubble and the eROSITA X-ray bubble. At ultra-long wavelengths (wavelength m or frequency MHz), particularly below MHz, the free-free absorption of the radio signal by diffuse electrons in the interstellar medium (ISM) becomes significant, resulting in different sky morphologies from those at higher frequencies. In this paper, we develop emissivity models for the two Loop I/NPS origin scenarios, and predict the Loop I/NPS morphology at ultra-long wavelengths in both scenarios, taking into account the free-free absorption effect.We find that in the SNRs model, the full Loop I/NPS will still be a bright arc even at MHz. In the GC model, the arc is fully visible only above MHz. While below this frequency, it is visible only at Galactic latitudes ; the part becomes invisible due to the absorption by the ISM electrons between the GC and the Sun. The upcoming space missions aiming at ultra-long wavelengths, such as the DSL and the FARSIDE, can potentially distinguish these two scenarios and provide decisive information about the origin of the Loop I/NPS.
Cite
@article{arxiv.2501.00431,
title = {Loop I/NPS morphology predictions in the ultralong-wavelength band},
author = {Yanping Cong and Bin Yue and Yidong Xu and Furen Deng and Jiajun Zhang and Xuelei Chen},
journal= {arXiv preprint arXiv:2501.00431},
year = {2025}
}
Comments
15 pages,6 figures,APJ accepted