Characterisation of Timau National Observatory using limited in-situ measurements
arXiv:2211.08918 · doi:10.1093/mnras/stac3349
Abstract
A new astronomical observatory in southeastern Indonesia is currently under construction. This Timau National Observatory will host a 3.8-metre telescope for optical and near-infrared observations. To support the operation and planning, the characterisation of the site needs to be appropriately performed. However, limited resources and access to the site hindered the deployment of instruments for comprehensive site testing. Fortunately, \emph{in-situ} sky brightness data from the Sky Quality Meter (SQM) have been available for almost two years. Based on the data acquired in 470 nights, we obtain a background sky brightness of magnitude/arcsec. Additionally, we evaluate the moonlit sky brightness to estimate the atmospheric extinction coefficient () and level of scattering on site. We find an alleviated value of , associated with a high atmospheric aerosol content. It is considered regular for an equatorial area situated at a low altitude ( masl). By analysing the fluctuation of the sky brightness and infrared images from \emph{Himawari-8} satellite, we estimate the available observing time (AOT) of at least hours/night and the yearly average percentage of usable nights of . The monthly average AOT from SQM and satellite data analysis correlate with . In terms of the monthly percentage of usable nights, the correlation coefficient is . During the wet season (November-April), the results from SQM and satellite data analysis deviate more significantly, mainly due to the limited capability of Himawari-8 in detecting fragmented low-altitude clouds. According to these results, we expect Timau to complement other observatories greatly.
11 pages, 11 figures, accepted for publication in MNRAS
References in corpus (15)
- The new world atlas of artificial night sky brightness
- Updated parameters of 1743 open clusters based on Gaia DR2
- Sky Quality Meter measurements in a colour changing world
- ULTRASPEC: a high-speed imaging photometer on the 2.4-m Thai National Telescope
- Global Site Selection for Astronomy
- The proliferation of space objects is a rapidly increasing source of artificial night sky brightness
- Visibility Predictions for Near-Future Satellite Megaconstellations: Latitudes near 50 Degrees will Experience the Worst Light Pollution
- Sky Quality Meter and satellite correlation for the night cloud cover analysis at astronomical sites
- A multi-band map of the natural night sky brightness including Gaia and Hipparcos integrated starlight
- Monitoring transition: expected night sky brightness trends in different photometric bands
- El Roque de Los Muchachos Site Characteristics. III. Analysis of Atmospheric Dust and Aerosol Extinction
- Aerosol characterization using satellite remote sensing of light pollution sources at night
- Instrumentation for comparing night sky quality and atmospheric conditions of CTA site candidates
- Astrosat: Forecasting satellite transits for optical astronomical observations
- New analysis of the fraction of observable nights at astronomical sites based on FengYun-2 satellite data