Calibration of the Relationship between Precipitable Water Vapor and 225 GHz Atmospheric Opacity via Optical Echelle Spectroscopy at Las Campanas Observatory
arXiv:0706.2683 · doi:10.1086/520097
Abstract
We report precipitable water vapor (PWV) measurements made at Las Campanas Observatory using optical spectra of H2O lines obtained with the Magellan echelle spectrograph, and calculated using a robust technique that is accurate to 5-10%. Calibration of the relationship between our PWV measurements and opacity values at 225 GHz was made possible by simultaneous tipping radiometer observations. Based on this calibration, we present Las Campanas Observatory winter-time precipitable water vapor statistics, measured using the tipping radiometer, during a two month campaign. The median value of 2.8 +- 0.3 mm is consistent with that measured at the nearby La Silla Observatory during the VLT site survey. We conclude that, in the Southern hemisphere winter months, we can expect good conditions for infrared observing (<~1.5 mm) approximately 10% of the time at Las Campanas Observatory.
14 pages, 5 tables, 9 figures, accepted by PASP in May 2007
Cited by in corpus (7)
- The Nuclear Near-Infrared Spectral Properties of Nearby Galaxies
- Towards More Precise Survey Photometry for PanSTARRS and LSST: Measuring Directly the Optical Transmission Spectrum of the Atmosphere
- Accounting for Chromatic Atmospheric Effects on Barycentric Corrections
- Monitoring Telluric Absorption with CAMAL
- SYMBA: An end-to-end VLBI synthetic data generation pipeline
- Giant Magellan Telescope Site Testing Summary
- Precision Time-series Photometry in the Thermal Infrared with a 'Wall-Eyed' Pointing Mode at the Large Binocular Telescope