CPL - Chalmers Publication Library
| Utbildning | Forskning | Styrkeområden | Om Chalmers | In English In English Ej inloggad.

Potential of radiotelescopes for atmospheric line observations: I. Observation principles and transmission curves for selected sites

N. Schneider ; Joachim Urban (Institutionen för radio- och rymdvetenskap, Global miljömätteknik och modellering) ; P. Baron
Planetary and Space Science (0032-0633). Vol. 57 (2009), 12, p. 1419-1433.
[Artikel, refereegranskad vetenskaplig]

Existing and planned radiotelescopes working in the millimetre (mm) and sub-millimetre wavelengths range provide the possibility to be used for atmospheric line observations. To scrutinize this potential, we outline the differences and similarities in technical equipment and observing techniques between ground-based aeronomy mm-wave radiometers and radiotelescopes. Comprehensive tables summarizing the technical characteristics of existing and future (sub)-mm radiotelescopes are given. The advantages and disadvantages using radiotelescopes for atmospheric line observations are discussed. In view of the importance of exploring the sub-mm and far-infrared wavelengths range for astronomical observations and atmospheric sciences, we present model calculations of the atmospheric transmission for selected telescope sites (DOME-C/Antarctica, ALMA/Chajnantor, JCMT and CSO on Mauna Kea/Hawaii, KOSMA/Swiss Alpes) for frequencies between 0 and 2000GHz (150 mu m) and typical atmospheric conditions using the forward model MOLIERE (version 5). For the DOME-C site, the transmission over a larger range of up to 10 THz (30 mu m) is calculated in order to demonstrate the quality of an Earth-bound site for mid-IR observations. All results are available on a dedicated webpage.

Nyckelord: Radiotelescopes and instrumentation; Atmospheric transmission



Denna post skapades 2009-09-23. Senast ändrad 2014-09-02.
CPL Pubid: 98644

 

Läs direkt!


Länk till annan sajt (kan kräva inloggning)


Institutioner (Chalmers)

Institutionen för radio- och rymdvetenskap, Global miljömätteknik och modellering (2009-2010)

Ämnesområden

Astronomi, astrofysik och kosmologi
Meteorologi och atmosfärforskning

Chalmers infrastruktur