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1 Structure  





2 Function  



2.1  Scientific objectives  







3 Project team  





4 References  














Mauritius Radio Telescope






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Coordinates: 20°0821S 57°4331E / 20.1392°S 57.7253°E / -20.1392; 57.7253
 

From Wikipedia, the free encyclopedia
 


Mauritius Radio Telescope
Location(s)Bras d'Eau National Park, Flacq District, Mauritius
Coordinates20°08′21S 57°43′31E / 20.1392°S 57.7253°E / -20.1392; 57.7253 Edit this at Wikidata
OrganizationIndian Institute of Astrophysics
Raman Research Institute
University of Mauritius Edit this on Wikidata
Wavelength151.5 MHz (1.979 m)
First light1992 Edit this on Wikidata
Telescope styleradio telescope Edit this on Wikidata
Websitewww.uom.ac.mu/mrt/ Edit this at Wikidata
Mauritius Radio Telescope is located in Mauritius
Mauritius Radio Telescope

Location of Mauritius Radio Telescope

The Mauritius Radio Telescope (MRT) is a synthesis radio telescopeinMauritius that is used to make images of the sky at a frequency of 151.5 MHz. The MRT was primarily designed to make a survey with a point source sensitivity of 150 mJy. Its resolution is about 4 arc min.[1]

Structure[edit]

The MRT is a T-shaped array consisting of a 2048m-long East-West arm with 1024 fixed helical antennas arranged in 32 groups and an 880m-long North-South arm with 15 movable trolleys, each containing four antennas.[1] There is a single trolley in the North arm. The North-South arm is built along the old Port LouistoFlacq railway line which closed in 1964.

Function[edit]

The antennas collect radio waves and transform them into electric signals. The signal from each group is filtered, amplified and sent to the telescope building where it is digitized. The digitized signals are processed in a correlator. Linux systems using custom software transform these correlated signals into raw images called "dirty maps".[1]

The MRT uses aperture synthesis to simulate a 1 km by 1 km filled array. Data is collected as the trolleys in the North-South arm move southward from the array centre. Observations are repeated 62 times until the trolleys reach the southern end the arm. The 1-D data for each day is added so as to make a 2-D map of the sky. Unlike most radio telescopes, the MRT can 'see' very extended sources. Also, the non-co-planarity of the East-West arm have led to new imaging techniques used in cleaning the raw data.[1]

Although the MRT was primarily designed to conduct the 151.5 MHz survey, it has also been used for pulsar observations. During pulsar observations, only the East-West arm is used. The group outputs are added together, with a tracking capability of about 2 degrees for a source transiting at meridian. This corresponds to 8 minutes for an equatorial source. The data is recorded at a fast rate over a band width of 1 MHz. The data processing is done to produce a dedispersed output in the desired format, including the pulsar profile unique to each pulsar.

The MRT is also meant to map the Milky Way. A point source catalogue of around 100,000 objects is to be produced. Already 3 observation rounds of the southern sky have been made. In addition, solar data has also been collected. About 300 GB of raw data has been collected.

Scientific objectives[edit]

The MRT project intends

Project team[edit]

The MRT, first commissioned in 1992, is run as a joint project by the University of Mauritius, the Indian Institute of Astrophysics (IIA) and the Raman Research Institute. While first initiated by Prof. Ch.V. Sastry of the IIA, the project was run by Prof. N. Uday Shankar of the RRI for nearly 5 years. The Head of MRT in Mauritius rotates between Dr Nalini Issur, Dr Girish Beeharry and Dr Radhakhrishna Somanah.[2]

References[edit]

  1. ^ a b c d Astrophysical results of the Mauritius radio telescope, IOP Conf. Series: Materials Science and Engineering, 44 (2013). R. Somanah, N. Issur and N. Oozeer.
  • ^ a b "MRT Home Page". Archived from the original on 2012-10-19. Retrieved 2015-02-15.

  • Retrieved from "https://en.wikipedia.org/w/index.php?title=Mauritius_Radio_Telescope&oldid=1095707476"

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    This page was last edited on 29 June 2022, at 22:00 (UTC).

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