Back to Search Start Over

Site testing for submillimetre astronomy at Dome C, Antarctica

Authors :
Tremblin, P.
Minier, V.
Schneider, N.
Durand, G. Al.
Ashley, M. C. B.
Lawrence, J. S.
Luong-Van, D. M.
Storey, J. W. V.
Durand, G. An.
Reinert, Y.
Veyssiere, C.
Walter, C.
Ade, P.
Calisse, P. G.
Challita, Z.
Fossat, E.
Sabbatini, L.
Pellegrini, A.
Ricaud, P.
Urban, J.
Publication Year :
2011

Abstract

Over the past few years a major effort has been put into the exploration of potential sites for the deployment of submillimetre astronomical facilities. Amongst the most important sites are Dome C and Dome A on the Antarctic Plateau, and the Chajnantor area in Chile. In this context, we report on measurements of the sky opacity at 200 um over a period of three years at the French-Italian station, Concordia, at Dome C, Antarctica. We also present some solutions to the challenges of operating in the harsh polar environ- ment. Dome C offers exceptional conditions in terms of absolute atmospheric transmission and stability for submillimetre astron- omy. Over the austral winter the PWV exhibits long periods during which it is stable and at a very low level (0.1 to 0.3 mm). Higher values (0.2 to 0.8 mm) of PWV are observed during the short summer period. Based on observations over three years, a transmission of around 50% at 350 um is achieved for 75% of the time. The 200-um window opens with a typical transmission of 10% to 15% for 25% of the time. Dome C is one of the best accessible sites on Earth for submillimetre astronomy. Observations at 350 or 450 {\mu}m are possible all year round, and the 200-um window opens long enough and with a sufficient transparency to be useful. Although the polar environment severely constrains hardware design, a permanent observatory with appropriate technical capabilities is feasible. Because of the very good astronomical conditions, high angular resolution and time series (multi-year) observations at Dome C with a medium size single dish telescope would enable unique studies to be conducted, some of which are not otherwise feasible even from space.

Details

Database :
arXiv
Publication Type :
Report
Accession number :
edsarx.1110.4311
Document Type :
Working Paper
Full Text :
https://doi.org/10.1051/0004-6361/201117345