Direction-dependent instrumental polarisation is a major systematic limitation in high-fidelity single-dish radio polarimetry, yet a unified characterisation of beam leakage and the conditioning of polarisation recovery is lacking for the Ghana Radio Astronomy Observatory (GRAO) 32-m telescope. We aim to establish a quantitative, direction-dependent polarimetric beam model at 5.0 and 6.7 GHz. High-resolution \texttt{GRASP} electromagnetic simulations of the nominal telescope configuration are used to derive the full complex Jones response and corresponding Mueller matrices, from which beam shape, beam squint, instrumental Stokes leakage, and intrinsic cross-polarisation ratio (IXR) are evaluated across the primary beam. The Stokes $I$ beams have half-power beam widths of $396.4$ and $295.3$ arcsec at 5.0 and 6.7 GHz, respectively, with main-beam efficiencies of $56.4$ and $55.6$ per cent. At 5.0 GHz, the circular-polarisation beam squint is $9.96$ arcsec ($2.5$ per cent of the HPBW), whereas no statistically significant squint is detected at 6.7 GHz. Leakage from Stokes $I$ into linear polarisation remains below $0.1$ per cent within the half-power beam but increases substantially towards the sidelobes. IXR reaches approximately $80$ dB on axis and decreases with angular offset. These results establish the intrinsic electromagnetic polarimetric response of the GRAO 32-m telescope and provide a quantitative baseline for direction-dependent calibration and subsequent observational validation.
BICEP Array (BA) is the current-generation instrument in the BICEP series of small-aperture, on-axis refracting telescopes at the South Pole, designed to constrain the tensor-to-scalar ratio r through degree-scale measurements of B-mode polarization in the cosmic microwave background (CMB). As BA pushes to deeper sensi...
M. Poza, P. Ade, Z. Ahmed et al.· Astronomical Telescopes + In...· 0 citations
The European Solar Telescope (EST) is a next-generation 4.2 m solar facility designed to achieve high-sensitivity spectropolarimetric observations of the solar atmosphere. Meeting its scientific objectives requires a precise characterization of the telescope Mueller matrix, which imposes stringent requirements on the d...
E. Soria, M. Collados, Á. Mato et al.· Astronomical Telescopes + In...· 2 citations
Polarimetric interferometry combines milliarcsecond angular resolution with sensitivity to scattered light and can therefore probe both dust formation around evolved stars and dust survival at the inner rims of planet-forming disks. At optical and near-infrared wavelengths, however, the many oblique reflections in an i...
L. Shuai, J. Monnier, B. Setterholm et al.· Astronomical Telescopes + In...· 0 citations
Dual-field interferometry uses a bright reference star for real-time fringe tracking, allowing a second beam combiner to record long coherent integrations on a fainter off-axis science target. At the Center for High Angular Resolution Astronomy (CHARA) Array, we implement this mode using the six-telescope MIRC-X and MY...
N. Anugu, J. Monnier, D. Gies et al.· Astronomical Telescopes + In...· 0 citations
In the frame of the space infrared telescope for cosmology and astrophysics (ESA/JAXA) telescope project, we investigated the feasibility of a polarimetric camera, the magnetic field [B] explorer with bolometric polarimeter instrument, designed to study the magnetic field at different scales in the universe in the far...
A. Aliane, L. Dussopt, Louis R. Rodriguez et al.· IEEE transactions on applied...· 0 citations
Spectro-polarimetry of HAbitable Planet Earth (SHAPE) is an experimental instrument onboard the Propulsion Module (Orbiter) of the Chandrayaan-3 mission, designed to perform disc-integrated spectro-polarimetric observations of Earth from lunar and highly elliptical Earth orbits. SHAPE is a compact, lightweight spectro-...
Anuj Nandi, Swapnil Singh, B. Jaiswal et al.· Advances in Space Research· 0 citations
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