Optical Turbulence Measurements and Models for Mount John University Observatory
Abstract
Site measurements were collected at Mount John University Observatory in 2005 and 2007 using a purpose-built scintillation detection and ranging system. profiling indicates a weak layer located at 12 - 14 km above sea level and strong low altitude turbulence extending up to 5 km. During calm weather conditions, an additional layer was detected at 6 - 8 km above sea level. profiling suggests that tropopause layer velocities are nominally 12 - 30 m/s, and near-ground velocities range between 2 -- 20 m/s, dependent on weather. Little seasonal variation was detected in either and profiles. The average coherence length, , was found to be cm for the full profile at a wavelength of 589 nm. The average isoplanatic angle, , was arcsec. The mean turbulence altitude, , was found to be km above sea level. No average in the Greenwood frequency, , could be established due to the gaps present in the \vw\s profiles obtained. A modified Hufnagel-Valley model was developed to describe the profiles at Mount John, which estimates at 6 cm and at 0.9 arcsec. A series of models were developed, based on the Greenwood wind model with an additional peak located at low altitudes. Using the model and the suggested model for moderate ground wind speeds, is estimated at 79 Hz.
Keywords
Cite
@article{arxiv.1008.0998,
title = {Optical Turbulence Measurements and Models for Mount John University Observatory},
author = {J. L. Mohr and R. A. Johnston and P. L. Cottrell},
journal= {arXiv preprint arXiv:1008.0998},
year = {2010}
}
Comments
14 pages; accepted for publication in PASA