The main characteristics in the radio continuum spectra of Supernova Remnants
(SNRs) result from simple synchrotron emission. In addition, electron
acceleration mechanisms can shape the spectra in specific ways, especially at
high radio frequencies. These features are connected to the age and the
peculiar conditions of the local interstellar medium interacting with the SNR.
Whereas the bulk radio emission is expected at up to 20−50 GHz, sensitive
high-resolution images of SNRs above 10 GHz are lacking and are not easily
achievable, especially in the confused regions of the Galactic Plane. In the
framework of the early science observations with the Sardinia Radio Telescope
in February-March 2016, we obtained high-resolution images of SNRs Tycho, W44
and IC443 that provided accurate integrated flux density measurements at 21.4
GHz: 8.8 ± 0.9 Jy for Tycho, 25 ± 3 Jy for W44 and 66 ± 7 Jy for
IC443. We coupled the SRT measurements with radio data available in the
literature in order to characterise the integrated and spatially-resolved
spectra of these SNRs, and to find significant frequency- and region-dependent
spectral slope variations. For the first time, we provide direct evidence of a
spectral break in the radio spectral energy distribution of W44 at an
exponential cutoff frequency of 15 ± 2 GHz. This result constrains the
maximum energy of the accelerated electrons in the range 6−13 GeV, in
agreement with predictions indirectly derived from AGILE and \textit{Fermi}-LAT
gamma-ray observations. With regard to IC443, our results confirm the
noticeable presence of a bump in the integrated spectrum around 20−70 GHz
that could result from a spinning dust emission mechanism.Comment: 12 pages, 9 figure