215 research outputs found
The Stripe 82 1-2 GHz Very Large Array Snapshot Survey: Multiwavelength Counterparts
We have combined spectrosopic and photometric data from the Sloan Digital Sky
Survey (SDSS) with GHz radio observations, conducted as part of the
Stripe 82 GHz Snapshot Survey using the Karl G. Jansky Very Large Array
(VLA), which covers sq degrees, to a flux limit of 88 Jy rms.
Cross-matching the radio source components with optical data via
visual inspection results in a final sample of cross-matched objects,
of which have spectroscopic redshifts and objects have
photometric redshifts. Three previously undiscovered Giant Radio Galaxies
(GRGs) were found during the cross-matching process, which would have been
missed using automated techniques. For the objects with spectroscopy we
separate radio-loud Active Galactic Nuclei (AGN) and star-forming galaxies
(SFGs) using three diagnostics and then further divide our radio-loud AGN into
the HERG and LERG populations. A control matched sample of HERGs and LERGs,
matched on stellar mass, redshift and radio luminosity, reveals that the host
galaxies of LERGs are redder and more concentrated than HERGs. By combining
with near-infrared data, we demonstrate that LERGs also follow a tight
relationship. These results imply the LERG population are hosted by population
of massive, passively evolving early-type galaxies. We go on to show that
HERGs, LERGs, QSOs and star-forming galaxies in our sample all reside in
different regions of a WISE colour-colour diagram. This cross-matched sample
bridges the gap between previous `wide but shallow' and `deep but narrow'
samples and will be useful for a number of future investigations.Comment: 17 pages, 19 figures. Resubmitted to MNRAS after the initial comment
The faint radio source population at 15.7 GHz – IV. The dominance of core emission in faint radio galaxies
We present 15-GHz Karl G. Jansky Very Large Array observations of a complete sample of radio galaxies selected at 15.7 GHz from the Tenth Cambridge (10C) survey. 67 out of the 95 sources (71 per cent) are unresolved in the new observations and lower frequency radio observations, placing an upper limit on their angular size of ∼2 arcsec
MIGHTEE-HI: The relation between the HI gas in galaxies and the cosmic web
We study the 3D axis of rotation (3D spin) of 77 HI galaxies from the
MIGHTEE-HI Early Science observations, and its relation to the filaments of the
cosmic web. For this HI-selected sample, the alignment between the spin axis
and the closest filament () is higher for galaxies
closer to the filaments, with for galaxies Mpc from their closest filament compared to
for galaxies at Mpc. We find that galaxies with a low HI-to-stellar mass ratio
() are more aligned with their closest
filaments, with ; whilst
galaxies with () tend to be
mis-aligned, with . We
find tentative evidence that the spin axis of HI-selected galaxies tend to be
aligned with associated filaments ( Mpc), but this depends on the gas
fractions. Galaxies that have accumulated more stellar mass compared to their
gas mass tend towards stronger alignment. Our results suggest that those
galaxies that have accrued high gas fraction with respect to their stellar mass
may have had their spin axis alignment with the filament disrupted by a recent
gas-rich merger, whereas the spin vector for those galaxies in which the
neutral gas has not been strongly replenished through a recent merger tend to
orientate towards alignment with the filament. We also investigate the spin
transition between galaxies with a high HI content and a low HI content at a
threshold of found in simulations,
however we find no evidence for such a transition with the current data.Comment: 11 pages, 9 figures, 5 tables, accepted for publication in MNRA
The relation between the diffuse X-ray luminosity and the radio power of the central AGN in galaxy groups
Our understanding of how active galactic nucleus feedback operates in galaxy clusters has improved in recent years owing to large efforts in multiwavelength observations and hydrodynamical simulations. However, it is much less clear how feedback operates in galaxy groups, which have shallower gravitational potentials. In this work, using very deep Very Large Array and new MeerKAT observations from the MIGHTEE survey, we compiled a sample of 247 X-ray selected galaxy groups detected in the COSMOS field. We have studied the relation between the X-ray emission of the intra-group medium and the 1.4 GHz radio emission of the central radio galaxy. For comparison, we have also built a control sample of 142 galaxy clusters using ROSAT and NVSS data. We find that clusters and groups follow the same correlation between X-ray and radio emission. Large radio galaxies hosted in the centres of groups and merging clusters increase the scatter of the distribution. Using statistical tests and Monte Carlo simulations, we show that the correlation is not dominated by biases or selection effects. We also find that galaxy groups are more likely than clusters to host large radio galaxies, perhaps owing to the lower ambient gas density or a more efficient accretion mode. In these groups, radiative cooling of the intra-cluster medium could be less suppressed by active galactic nucleus heating. We conclude that the feedback processes that operate in galaxy clusters are also effective in groups.Peer reviewe
The discovery of a z=0.7092 OH megamaser with the MIGHTEE survey
We present the discovery of the most distant OH megamaser to be observed in the main lines, using data from the MeerKAT
International Giga-Hertz Tiered Extragalactic Exploration (MIGHTEE) survey. At a newly measured redshift of = 0.7092, the
system has strong emission in both the 1665 MHz ( ≈ 2500 L⊙) and 1667 MHz ( ≈ 4.5×104 L⊙) transitions, with both narrow
and broad components. We interpret the broad line as a high-velocity-dispersion component of the 1667 MHz transition, with
velocity ∼ 330 km s−1 with respect to the systemic velocity. The host galaxy has a stellar mass of ★ = 2.95 × 1010 M⊙ and a
star-formation rate of SFR = 371 M⊙ yr−1
, placing it ∼ 1.5 dex above the main sequence for star-forming galaxies at this redshift,
and can be classified as an ultra-luminous infrared galaxy. Alongside the optical imaging data, which exhibits evidence for a tidal
tail, this suggests that the OH megamaser arises from a system that is currently undergoing a merger, which is stimulating star
formation and providing the necessary conditions for pumping the OH molecule to saturation. The OHM is likely to be lensed,
with a magnification factor of ∼ 2.5, and perhaps more if the maser emitting region is compact and suitably offset relative to
the centroid of its host galaxy’s optical light. This discovery demonstrates that spectral line mapping with the new generation of
radio interferometers may provide important information on the cosmic merger history of galaxies
MeerKLASS: MeerKAT Large Area Synoptic Survey
We discuss the ground-breaking science that will be possible with a wide area
survey, using the MeerKAT telescope, known as MeerKLASS (MeerKAT Large Area
Synoptic Survey). The current specifications of MeerKAT make it a great fit for
science applications that require large survey speeds but not necessarily high
angular resolutions. In particular, for cosmology, a large survey over for hours will potentially provide the first
ever measurements of the baryon acoustic oscillations using the 21cm intensity
mapping technique, with enough accuracy to impose constraints on the nature of
dark energy. The combination with multi-wavelength data will give unique
additional information, such as exquisite constraints on primordial
non-Gaussianity using the multi-tracer technique, as well as a better handle on
foregrounds and systematics. Such a wide survey with MeerKAT is also a great
match for HI galaxy studies, providing unrivalled statistics in the pre-SKA era
for galaxies resolved in the HI emission line beyond local structures at z >
0.01. It will also produce a large continuum galaxy sample down to a depth of
about 5\,Jy in L-band, which is quite unique over such large areas and
will allow studies of the large-scale structure of the Universe out to high
redshifts, complementing the galaxy HI survey to form a transformational
multi-wavelength approach to study galaxy dynamics and evolution. Finally, the
same survey will supply unique information for a range of other science
applications, including a large statistical investigation of galaxy clusters as
well as produce a rotation measure map across a huge swathe of the sky. The
MeerKLASS survey will be a crucial step on the road to using SKA1-MID for
cosmological applications and other commensal surveys, as described in the top
priority SKA key science projects (abridged).Comment: Larger version of the paper submitted to the Proceedings of Science,
"MeerKAT Science: On the Pathway to the SKA", Stellenbosch, 25-27 May 201
MIGHTEE: Deep 1.4 GHz Source Counts and the Sky Temperature Contribution of Star Forming Galaxies and Active Galactic Nuclei
We present deep 1.4 GHz source counts from 5 deg of the continuum
Early Science data release of the MeerKAT International Gigahertz Tiered
Extragalactic Exploration (MIGHTEE) survey down to 15
Jy. Using observations over two extragalactic fields (COSMOS and XMM-LSS),
we provide a comprehensive investigation into correcting the incompleteness of
the raw source counts within the survey to understand the true underlying
source count population. We use a variety of simulations that account for:
errors in source detection and characterisation, clustering, and variations in
the assumed source model used to simulate sources within the field and
characterise source count incompleteness. We present these deep source count
distributions and use them to investigate the contribution of extragalactic
sources to the sky background temperature at 1.4 GHz using a relatively large
sky area. We then use the wealth of ancillary data covering{a subset of the
COSMOS field to investigate the specific contributions from both active
galactic nuclei (AGN) and star forming galaxies (SFGs) to the source counts and
sky background temperature. We find, similar to previous deep studies, that we
are unable to reconcile the sky temperature observed by the ARCADE 2
experiment. We show that AGN provide the majority contribution to the sky
temperature contribution from radio sources, but the relative contribution of
SFGs rises sharply below 1 mJy, reaching an approximate 15-25% contribution to
the total sky background temperature (100 mK) at 15 Jy.Comment: 24 pages, 12 figures; Accepted for publication in MNRA
Search and modelling of remnant radio galaxies in the LOFAR Lockman Hole field
Accepted for publication in Astronomy & Astrophysics. Reproduced with permission from Astronomy & Astrophysics, © 2017 ESO.The phase of radio galaxy evolution after the jets have switched off, often referred to as the remnant phase, is poorly understood and very few sources in this phase are known. In this work we present an extensive search for remnant radio galaxies in the Lockman Hole, a well-studied extragalactic field. We create mock catalogues of low-power radio galaxies based on Monte Carlo simulations to derive first-order predictions of the fraction of remnants in radio flux limited samples for comparison with our Lockman-Hole sample. We have combined LOFAR observations at 150 MHz with public surveys at higher frequencies to perform a complete selection and have used, for the first time, a combination of spectral criteria (e.g. the classical ultra-steep spectral index and high spectral curvature) as well as morphological criteria (e.g. low radio core prominence and relaxed shapes). Mock catalogues of radio galaxies are created based on existing spectral and dynamical evolution models combined with observed source properties. We have identified 23 candidate remnant radio galaxies which cover a variety of morphologies and spectral characteristics. We suggest that these different properties are related to different stages of the remnant evolution. We find that ultra-steep spectrum remnants represent only a fraction of our remnant sample suggesting a very rapid luminosity evolution of the radio plasma. Results from mock catalogues demonstrate the importance of dynamical evolution in the remnant phase of low-power radio galaxies to obtain fractions of remnant sources consistent with our observations. Moreover, these results confirm that ultra-steep spectrum remnants represent only a subset of the entire population (50%) when frequencies higher than 1400 MHz are not included in the selection process, and that they are biased towards old ages.Peer reviewe
Threat-sensitive anti-predator defence in precocial wader, the northern lapwing Vanellus vanellus
Birds exhibit various forms of anti-predator behaviours to avoid reproductive failure, with mobbing—observation, approach and usually harassment of a predator—being one of the most commonly observed. Here, we investigate patterns of temporal variation in the mobbing response exhibited by a precocial species, the northern lapwing (Vanellus vanellus). We test whether brood age and self-reliance, or the perceived risk posed by various predators, affect mobbing response of lapwings. We quantified aggressive interactions between lapwings and their natural avian predators and used generalized additive models to test how timing and predator species identity are related to the mobbing response of lapwings. Lapwings diversified mobbing response within the breeding season and depending on predator species. Raven Corvus corax, hooded crow Corvus cornix and harriers evoked the strongest response, while common buzzard Buteo buteo, white stork Ciconia ciconia, black-headed gull Chroicocephalus ridibundus and rook Corvus frugilegus were less frequently attacked. Lapwings increased their mobbing response against raven, common buzzard, white stork and rook throughout the breeding season, while defence against hooded crow, harriers and black-headed gull did not exhibit clear temporal patterns. Mobbing behaviour of lapwings apparently constitutes a flexible anti-predator strategy. The anti-predator response depends on predator species, which may suggest that lapwings distinguish between predator types and match mobbing response to the perceived hazard at different stages of the breeding cycle. We conclude that a single species may exhibit various patterns of temporal variation in anti-predator defence, which may correspond with various hypotheses derived from parental investment theory
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