The structure of the giant radio fossil in the Ophiuchus galaxy cluster
arXiv:2508.20190 · doi:10.3847/1538-4357/adef4a
Abstract
We present high-sensitivity follow-up observations of the giant fossil radio lobe in the Ophiuchus galaxy cluster with the upgraded Giant Metrewave Radio Telescope (uGMRT) in the 125-250 MHz and 300-500 MHz frequency bands. The new data have sufficient angular resolution to exclude compact sources and enable us to trace the faint extended emission from the relic lobe to a remarkable distance of 820 kpc from the cluster center. The new images reveal intricate spatial structure within the fossil lobe, including narrow (5-10 kpc), long (70-100 kpc) radio filaments embedded within the diffuse emission at the bottom of the lobe. The filaments exhibit a very steep spectrum ( with ), significantly steeper than the ambient synchrotron emission from the lobe (); they mostly disappear in recently-published MeerKAT images at 1.28 GHz. Their origin is unclear; similar features observed in some other radio lobes typically have a spectrum flatter than that of their ambient medium. These radio filaments may trace regions where the magnetic field has been stretched and amplified by gas circulation within the rising bubble. The spectrum of the brightest region of the radio lobe exhibits a spectral break, which corresponds to a radiative cooling age of the fossil lobe of approximately 174 Myr, giving a date for this most powerful AGN explosion.
30 pages, 13 figures, published in ApJ
References in corpus (29)
- WSClean: an implementation of a fast, generic wide-field imager for radio astronomy
- GaLactic and Extragalactic All-sky Murchison Widefield Array (GLEAM) survey I: A low-frequency extragalactic catalogue
- Chandra temperature profiles for a sample of nearby relaxed galaxy clusters
- An optimized algorithm for multi-scale wideband deconvolution of radio astronomical images
- The Very Large Array Low-frequency Sky Survey Redux (VLSSr)
- The Molonglo Galactic Plane Survey (MGPS-2): Compact Source Catalogue
- Regulation of star formation in giant galaxies by precipitation, feedback, and conduction
- Raining on black holes and massive galaxies: the top-down multiphase condensation model
- In search of dying radio sources in the local universe
- Gentle re-energisation of electrons in merging galaxy clusters
- Wideband VLA Observations of Abell 2256 I: Continuum, Rotation Measure and Spectral Imaging
- Collimated synchrotron threads linking the radio lobes of ESO137-006
- NGC 326: X-shaped no more
- Magnetic fields and relativistic electrons fill entire galaxy cluster
- A snapshot of the oldest AGN feedback phases
- Radio footprints of a minor merger in the Shapley Supercluster: From supercluster down to galactic scales
- Intracluster magnetic filaments and an encounter with a radio jet
- Radio morphology and spectral analysis of cD galaxies in rich and poor galaxy clusters
- Discovery of a giant radio fossil in the Ophiuchus galaxy cluster
- Threads, Ribbons, and Rings in the Radio Galaxy IC 4296
- The flickering nuclear activity of Fornax A
- Interactions Between Radio Galaxies and Cluster Shocks - 1: Jet Axes Aligned with Shock Normals
- Spectral ageing in the era of big data: integrated vs resolved models
- Filaments in the southern giant lobe of Centaurus A: constraints on nature and origin from modelling and GMRT observations
- VLA resolves unexpected radio structures in the Perseus cluster of galaxies
- High-resolution, High-sensitivity, Low-frequency uGMRT View of Coma Cluster of Galaxies
- GMRT unveils steep-spectrum antique filaments in the galaxy cluster Abell 725
- J1615+5452: a remnant radio galaxy in the ELAIS-N1 field
- Signatures from a merging galaxy cluster and its AGN population: LOFAR observations of Abell 1682
Cited by in corpus (3)
- Resurging from the ashes: A spectral study of seven candidate revived radio fossils in nearby low-mass galaxy clusters
- The splash beneath the largest radio bubble in a cluster core
- Revealing the intricacies of radio galaxies and filaments in the merging galaxy cluster Abell 2255. II. Properties of filaments using multi-frequency radio data