The Standing Wave Phenomenon in Radio Telescopes; Frequency Modulation of the WSRT Primary Beam
arXiv:0712.2303 · doi:10.1051/0004-6361:20079122
Abstract
Inadequacies in the knowledge of the primary beam response of current interferometric arrays often form a limitation to the image fidelity. We hope to overcome these limitations by constructing a frequency-resolved, full-polarization empirical model for the primary beam of the Westerbork Synthesis Radio Telescope (WSRT). Holographic observations, sampling angular scales between about 5 arcmin and 11 degrees, were obtained of a bright compact source (3C147). These permitted measurement of voltage response patterns for seven of the fourteen telescopes in the array and allowed calculation of the mean cross-correlated power beam. Good sampling of the main-lobe, near-in, and far-side-lobes out to a radius of more than 5 degrees was obtained. A robust empirical beam model was detemined in all polarization products and at frequencies between 1322 and 1457 MHz with 1 MHz resolution. Substantial departures from axi-symmetry are apparent in the main-lobe as well as systematic differences between the polarization properties. Surprisingly, many beam properties are modulated at the 5 to 10% level with changing frequency. These include: (1) the main beam area, (2) the side-lobe to main-lobe power ratio, and (3) the effective telescope aperture. These semi-sinusoidsal modulations have a basic period of about 17 MHz, consistent with the natural 'standing wave' period of a 8.75 m focal distance. The deduced frequency modulations of the beam pattern were verified in an independent long duration observation using compact continuum sources at very large off-axis distances. Application of our frequency-resolved beam model should enable higher dynamic range and improved image fidelity for interferometric observations in complex fields. (abridged)
12 pages, 11 figures, Accepted for publication in A&A, figures compressed to low resolution; high-resolution version available at: http://www.astro.rug.nl/~popping/wsrtbeam.pdf
References in corpus (1)
Cited by in corpus (20)
- A Wide-field High Resolution HI Mosaic of Messier 31: I. Opaque Atomic Gas and Star Formation Rate Density
- Revisiting the radio interferometer measurement equation. II. Calibration and direction-dependent effects
- M82 - A radio continuum and polarisation study II. Polarisation and rotation measures
- MeerKAT Primary Beam Measurements in the L Band
- Montblanc: GPU accelerated Radio Interferometer Measurement Equations in support of Bayesian Inference for Radio Observations
- Holographic Beam Mapping of the CHIME Pathfinder Array
- MeqSilhouette : A mm-VLBI observation and signal corruption simulator
- MeerKAT Holography Measurements in the UHF, L, and S bands
- HI scaling relations of galaxies in the environment of HI-rich and control galaxies observed by the Bluedisk project
- Gain and Polarization Properties of a Large Radio Telescope from Calculation and Measurement: The John A. Galt Telescope
- Direction Dependent Corrections in Polarimetric Radio Imaging II: A-Solver Methodology A low-order solver for the A-Term of the A-Projection algorithm
- Continuum source catalog for the first APERTIF data release
- Reflections and Standing Waves on the Tianlai Cylinder Array
- Apercal -- The Apertif Calibration Pipeline
- Free-free absorption parameters of Cassiopeia A from low-frequency interferometric observations
- The detection of a massive chain of dark HI clouds in the GAMA G23 Field
- An Integrated System at the Bleien Observatory for Mapping the Galaxy
- Characterising the Apertif primary beam response
- A large-scale, regular intergalactic magnetic field associated with Stephan's Quintet?
- Apertif, Phased Array Feeds for the Westerbork Synthesis Radio Telescope