Primary Beam Calibration for Commensal Telescopes Utilizing Offset Optics

Fuente: arXiv
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Main Authors: Polisensky, Emil, Clarke, Tracy E., Giacintucci, Simona, Peters, Wendy
Format: Preprint
Published: 2024
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author Polisensky, Emil
Clarke, Tracy E.
Giacintucci, Simona
Peters, Wendy
author_facet Polisensky, Emil
Clarke, Tracy E.
Giacintucci, Simona
Peters, Wendy
contents Accurate primary beam calibration is essential for precise brightness measurements in radio astronomy. The VLA Low-band Ionosphere and Transient Experiment (VLITE) faces challenges in calibration due to the offset Cassegrain optics used in its commensal observing system. This study aims to develop a novel calibration method to improve accuracy with no impact on the Very Large Array (VLA) primary science observations. We used the apparent brightness of standard candles identified in VLITE's commensal data to develop 1D and 2D primary beam response models. These models accounted for operational changes and asymmetries caused by the subreflector and were validated against holographic methods and compact source light curves. The models achieved calibration accuracy within 3 percent across the field of view, significantly improving the precision of brightness measurements. The results were consistent with holography-derived solutions and performed reliably under different operational conditions. This improved calibration technique expands VLITE's capabilities for studying active galactic nuclei, transients, and pulsars. It offers a cost-effective alternative to traditional holographic methods, facilitating broader use in commensal observing systems.
format Preprint
id arxiv_https___arxiv_org_abs_2412_14525
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Primary Beam Calibration for Commensal Telescopes Utilizing Offset Optics
Polisensky, Emil
Clarke, Tracy E.
Giacintucci, Simona
Peters, Wendy
Instrumentation and Methods for Astrophysics
Accurate primary beam calibration is essential for precise brightness measurements in radio astronomy. The VLA Low-band Ionosphere and Transient Experiment (VLITE) faces challenges in calibration due to the offset Cassegrain optics used in its commensal observing system. This study aims to develop a novel calibration method to improve accuracy with no impact on the Very Large Array (VLA) primary science observations. We used the apparent brightness of standard candles identified in VLITE's commensal data to develop 1D and 2D primary beam response models. These models accounted for operational changes and asymmetries caused by the subreflector and were validated against holographic methods and compact source light curves. The models achieved calibration accuracy within 3 percent across the field of view, significantly improving the precision of brightness measurements. The results were consistent with holography-derived solutions and performed reliably under different operational conditions. This improved calibration technique expands VLITE's capabilities for studying active galactic nuclei, transients, and pulsars. It offers a cost-effective alternative to traditional holographic methods, facilitating broader use in commensal observing systems.
title Primary Beam Calibration for Commensal Telescopes Utilizing Offset Optics
topic Instrumentation and Methods for Astrophysics
url https://arxiv.org/abs/2412.14525