Comparison of the scintillation noise above different observatories measured with MASS instruments
arXiv:1208.3824 · doi:10.1051/0004-6361/201219954
Abstract
Scintillation noise is a major limitation of ground base photometric precision. An extensive dataset of stellar scintillation collected at 11 astronomical sites world-wide with MASS instruments was used to estimate the scintillation noise of large telescopes in the case of fast photometry and traditional long-exposure regime. Statistical distributions of the corresponding parameters are given. The scintillation noise is mostly determined by turbulence and wind in the upper atmosphere and comparable at all sites, with slightly smaller values at Mauna Kea and largest noise at Tolonchar in Chile. We show that the classical Young's formula under-estimates the scintillation noise.The temporal variations of the scintillation noise are also similar at all sites, showing short-term variability at time scales of 1 -- 2 hours and slower variations, including marked seasonal trends (stronger scintillation and less clear sky during local winter). Some correlation was found between nearby observatories.
Accepted for publication in Astronomy and Astrophysics, 14 pages, 11 figures
References in corpus (7)
- Combined MASS-DIMM instrument for atmospheric turbulence studies
- Atmospheric scintillation at Dome C, Antarctica: implications for photometry and astrometry
- Precision Astrometry with Adaptive Optics
- Ground-Based Submillimagnitude CCD Photometry of Bright Stars Using Snapshot Observations
- The statistics of the photometric accuracy based on MASS data and the evaluation of high-altitude wind
- The stellar scintillation on large and extremely large telescopes
- The revision of the turbulence profiles restoration from MASS scintillation indices
Cited by in corpus (12)
- Comparative performance of selected variability detection techniques in photometric time series
- Atmospheric Scintillation in Astronomical Photometry
- The Nainital-Cape Survey-IV
- Night-sky brightness and extinction at Mt. Shatdzhatmaz
- The wind-driven halo in high-contrast images I: analysis from the focal plane images of SPHERE
- Monitoring Telluric Absorption with CAMAL
- Scintillation-limited photometry with the 20-cm NGTS telescopes at Paranal Observatory
- Atmospheric Scintillation Noise in Ground-Based Exoplanet Photometry
- Forecasting seeing and parameters of long-exposure images by means of ARIMA
- Flickers, Bursts, and Dips: Detecting Rapid Variability with the g(2) Autocorrelation Function
- Useful relations for the analysis of stellar scintillation at the entrance pupil of a telescope
- Measurement of atmospheric scintillation during a period of Saharan dust (Calima) at Observatorio del Teide, Izaña, Tenerife, and the impact on photometric exposure times