Spectral analysis of spatially-resolved 3C295 (sub-arcsecond resolution) with the International LOFAR Telescope
arXiv:2108.07294 · doi:10.1051/0004-6361/202141731
Abstract
3C295 is a bright, compact steep spectrum source with a well-studied integrated radio spectral energy distribution (SED) from 132 MHz to 15 GHz. However, spatially resolved spectral studies have been limited due to a lack of high resolution images at low radio frequencies. These frequencies are crucial for measuring absorption processes, and anchoring the overall spectral modelling of the radio SED. In this paper, we use International LOFAR (LOw-Frequency ARray) Telescope (ILT) observations of 3C295 to study its spatially resolved spectral properties with sub-arcsecond resolution at 132 MHz. Combining our new 132 MHz observation with archival data at 1.6 GHz, 4.8 GHz, and 15 GHz, we are able to carry out a resolved radio spectral analysis. The spectral properties of the hotspots provides evidence for low frequency flattening. In contrast, the spectral shape across the lobes is consistent with a JP spectral ageing model. Using the integrated spectral information for each component, we then fit low-frequency absorption models to the hotspots, finding that both free-free absorption and synchrotron self-absorption models provide a better fit to the data than a standard power law. Although we can say there is low-frequency absorption present in the hotspots of 3C295, future observations with the Low Band Antenna of the ILT at 55 MHz may allow us to distinguish the type of absorption.
Submitted to a special issue of A&A on sub-arcsecond imaging with LOFAR
References in corpus (9)
- WSClean: an implementation of a fast, generic wide-field imager for radio astronomy
- An optimized algorithm for multi-scale wideband deconvolution of radio astronomical images
- Radio interferometric gain calibration as a complex optimization problem
- LOFAR observations of galaxy clusters in HETDEX
- On the two main classes of Active Galactic Nuclei
- Sub-arcsecond imaging with the International LOFAR Telescope I. Foundational calibration strategy and pipeline
- LOFAR imaging of Cygnus A -- Direct detection of a turnover in the hotspot radio spectra
- Radio spectral properties and jet duty cycle in the restarted radio galaxy 3C388
- Understanding the radio relic emission in the galaxy cluster MACS J0717.5+3745: spectral analysis