A digital video system for observing and recording occultations
arXiv:1507.05151 · doi:10.1017/pasa.2015.31
Abstract
Stellar occultations by asteroids and outer solar system bodies can offer ground based observers with modest telescopes and camera equipment the opportunity to probe the shape, size, atmosphere and attendant moons or rings of these distant objects. The essential requirements of the camera and recording equipment are: good quantum efficiency and low noise, minimal dead time between images, good horological faithfulness of the image time stamps, robustness of the recording to unexpected failure, and low cost. We describe the Astronomical Digital Video occultation observing and recording System (ADVS) which attempts to fulfil these requirements and compare the system with other reported camera and recorder systems. Five systems have been built, deployed and tested over the past three years, and we report on three representative occultation observations: one being a 9 +/-1.5 second occultation of the trans-Neptunian object 28978 Ixion (mv=15.2) at 3 seconds per frame, one being a 1.51 +/-0.017 second occultation of Deimos, the 12~km diameter satellite of Mars, at 30 frames per second, and one being a 11.04 +/-0.4 second occultation, recorded at 7.5 frames per second, of the main belt asteroid, 361 Havnia, representing a low magnitude drop (Dmv = 0.4) occultation.
9 pages, 5 figures, 3 tables, accepted to Publications of the Astronomical Society of Australia (PASA)
References in corpus (1)
Cited by in corpus (6)
- Stellar occultations enable milliarcsecond astrometry for Trans-Neptunian objects and Centaurs
- Occultation Portal: a web-based platform for data collection and analysis of stellar occultations
- Constraints on (2060) Chiron's size, shape, and surrounding material from the November 2018 and September 2019 stellar occultations
- The 2017 May 20 stellar occultation by the elongated centaur (95626) 2002 GZ
- The Case for a Large-Scale Occultation Network
- Kilometer-precise (UII) Umbriel physical properties from the multichord stellar occultation on 2020 September 21