Refine by year: 1984 | 1985 | 1986 | 1988 | 1989 | 1990 | 1991 | 1992 | 1993 | 1994 | 1995 | 1996 | 1997 | 1998 | 1999 | 2000 | 2001 | 2002 | 2003 | 2004 | 2005 | 2006 | 2007 | 2008 | 2009 | 2010 | 2011 | 2012 | 2013 | 2014 | 2015 | 2016 | 2017 | 2018 | 2019 | 2020 | 2021 | 2022 | 2025
View this list as a table/search result
The Science Case for PILOT I: Summary and Overview
Lawrence, J. S. et al., 2009, Publications of the Astronomical Society of Australia, 26, 379
Hemisphere/Antarctic Type/Instrument design Site/Dome C (Concordia Station) Wavelength/Optical Wavelength/Infrared
Sensitivity of the carbon cycle in the Arctic to climate change
McGuire, A. David et al., 2009, Ecological Monographs, 79, 523
Snodar II:. Probing the Atmospheric Boundary Layer on the Antarctic Plateau
Bonner, C. S. et al., 2009, Optical Turbulance: Astronomy Meets Meteorology, 264
Hemisphere/Antarctic Type/Instrument design Site/Dome A (Kunlun Station) Characteristics/Boundary layer turbulence
Comparison of the Atmosphere above the South Pole, Dome C and Dome A:. First Attempt
Hagelin, S. et al., 2009, Optical Turbulance: Astronomy Meets Meteorology, 240
Hemisphere/Antarctic Type/In-situ or ground-based observations Characteristics/Meteorological data Site/Dome C (Concordia Station) Site/Dome A (Kunlun Station) Site/South Pole
Mesoscale optical turbulence simulations at Dome C
Lascaux, F. et al., 2009, Monthly Notices of the Royal Astronomical Society, 398, 1093
Hemisphere/Antarctic Type/Modelling Site/Dome C (Concordia Station) Characteristics/Seeing & integrated turbulence Characteristics/Boundary layer turbulence
Ecological Dynamics Across the Arctic Associated with Recent Climate Change
Post, Eric et al., 2009, Science, 325, 1355
Where Is the Best Site on Earth? Domes A, B, C, and F, and Ridges A and B
Saunders, Will et al., 2009, Publications of the Astronomical Society of the Pacific, 121, 976
Hemisphere/Antarctic Type/Satellite observations Characteristics/Precipitable water vapour Type/Modelling Type/In-situ or ground-based observations Characteristics/Atmospheric transparency Wavelength/Terahertz Site/Dome F (Dome Fuji) Characteristics/Meteorological data Site/Dome C (Concordia Station) Characteristics/Seeing & integrated turbulence Wavelength/Optical Site/Dome A (Kunlun Station) Site/South Pole Characteristics/Sky brightness & stability Characteristics/Boundary layer turbulence Characteristics/Free atmosphere turbulence profiles Wavelength/Infrared Site/Ridge A
How we can Understand the Antarctic Atmosphere?
Storey, J. W. V., Ashley, M. C. B. & Lawrence, J. S., 2009, Optical Turbulance: Astronomy Meets Meteorology, 82
Type/Review Hemisphere/Antarctic Characteristics/Atmospheric transparency Characteristics/Seeing & integrated turbulence Wavelength/Infrared
Arctic air temperature change amplification and the Atlantic Multidecadal Oscillation
Chylek, Petr et al., 2009, Geophysical Research Letters, 36, L14801
Dome C site testing: surface layer, free atmosphere seeing, and isoplanatic angle statistics
Aristidi, E. et al., 2009, Astronomy and Astrophysics, 499, 955
Hemisphere/Antarctic Type/In-situ or ground-based observations Site/Dome C (Concordia Station) Characteristics/Seeing & integrated turbulence Characteristics/Boundary layer turbulence Characteristics/Free atmosphere turbulence profiles