Accurate radio astrometry is essential for reliable cross-identification of sources across wavelengths, precision localisation of transient events, and the construction of stable all-sky reference catalogues. In this work we extend our astrometric correction framework for the Rapid ASKAP Continuum Survey (RACS) to its mid- and high-frequency epochs (RACS-Mid1 and RACS-High1), building on our previous corrections to the low-frequency surveys. Using a hierarchical crossmatching strategy with high-precision external catalogues, we remove large-scale systematic positional errors that were present in the uncorrected data and significantly reduce the residual scatter across the sky. After correction, the median positional offsets are effectively eliminated, and the 68\% confidence interval of the mean residuals of RACS source positions averaged over $~\sim1$~sq.deg. regions is reduced from $\gtrsim 0.4''$ to $\lesssim 0.18''$ over most of the survey area for both epochs. Independent validation against multiple external radio astrometric references confirms that individual corrected RACS source positions are accurate to a 1-$\sigma$ confidence level of $\sim 0.25''$ across the bulk of the sky, with slightly degraded performance within the Galactic plane. While motivated primarily by the need for improved localisation of ASKAP fast radio bursts, these corrections also benefit a wide range of science applications, including transient identification, multiwavelength host association, and studies of Galactic and extragalactic radio populations. Together with our previous work, this establishes RACS as the highest precision arcsecond-resolution all-sky astrometric reference in the southern hemisphere at decimetre wavelengths.
Precise orbit determination of natural satellites relies on the consistent combination of heterogeneous astrometric observations spanning long time intervals. However, the use of different reference star catalogs introduces spatially correlated systematic biases that degrade data consistency and limit orbit accuracy. I...
Z. Yang, H.-Y. Zhang, K. Tang et al.· Astrophysical Journal Supple...· 0 citations
High-redshift radio galaxies (HzRGs) are among the earliest and most massive galaxies whose powerful radio emission allows us to probe the large-scale structure, galaxy evolution, and the epoch of reionisation. We present a new sample of HzRG candidates constructed using the 1.28 GHz data from the MeerKAT Galaxy Clus...
Unknown authors· Monthly notices of the Royal...· 0 citations
The First LHAASO Catalogue lists 90 sources of very-high-energy gamma-ray emission, many without an established counterpart at other frequencies, reopening the question of which Galactic accelerators produce the highest-energy cosmic rays. We search for low-frequency radio counterparts to the 55 1LHAASO sources that fa...
M. Arias, T. Shimwell, M. Hardcastle et al.· 0 citations
The Mid-infrared ELT Imager and Spectrograph (METIS) will provide diffraction-limited L′-band imaging of crowded stellar fields, where spatial variation in the adaptive optics point-spread function (PSF) complicates astrometry and photometry. We assess StarFinder2 using a 30 min ScopeSim observation of the Galactic Cen...
L. S. Sousa, Carlos M. Correia, K. Mužić et al.· Astronomical Telescopes + In...· 0 citations
High-precision astrometry of planetary satellites is important for refining ephemerides and supporting deep-space exploration missions. We apply the Bilateral-filtered Single-Scale Retinex with Gaussian regularization (BSSR-Gaussian) method to 140 CCD images of Saturn obtained at Yunnan Observatory and evaluate the p...
Z.Y. Wang, Hui-Yan Zhang, Rong-Chuan Qiao et al.· Research in Astronomy and As...· 0 citations
We calibrate the Next Generation Palomar Spectrograph (NGPS) for precision stellar radial-velocity (RV) measurements using repeated observations of 24 Gaia-ESO RV standards spanning $G=11$-$18$. Because NGPS is mounted at the Hale telescope's Cassegrain focus, changes in instrumental flexure produce wavelength-solution...
Pranav Nagarajan, K. El-Badry· 0 citations
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