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학술논문Journal of the Korean Astronomical Society2019.12 발행

PERFORMANCE OF THE TRAO 13.7-M TELESCOPE WITH NEW SYSTEMS

PERFORMANCE OF THE TRAO 13.7-M TELESCOPE WITH NEW SYSTEMS

정일교((주) 에스이티시스템); 강현우(한국천문연구원(Korea Astronomy and Space Science Institute)); 정재훈(한국천문연구원(Korea Astronomy and Space Science Institute)); 이창훈(한국천문연구원); 변도영(한국천문연구원); 제도흥(한국천문연구원); 강성주(한국천문연구원); 이영웅(한국천문연구원); 이창원(한국천문연구원)

52권 6호, 227~233쪽

초록

We report the performance of the 13.7-meter Taeduk Radio Astronomy Observatory (TRAO) radio telescope. The telescope has been equipped with a new receiver, SEQUOIA-TRAO, a new backend system, FFT2G, and a new VxWorks operating system. The receiver system features a 16-pixel focal plane array using high-performance MMIC preamplifiers; it shows very low system noise levels, with system noise temperatures from 150 K to 450 K at frequencies from 86 to 115 GHz. With the new backend system, we can simultaneously obtain 32 spectra, each with a velocity coverage of 163 kms¯1 and a resolution of 0.04 kms¯1 at 115 GHz. The new operating system, VxWorks, has successfully handled the LMTMC-TRAO observing software. The main observing method is the on-the-fly (OTF) mapping mode; a position-switching mode is available for small-area observations. Remote observing is provided. The antenna surface has been newly adjusted using digital photogrammetry, achieving a rms surface accuracy better than 130 μm. The pointing uncertainty is found to be less than 500 over the entire sky. We tested the new receiver system with multi-frequency observations in OTF mode. The aperture efficiencies are 43±1%, 42±1%, 37±1%, and 33±1%, the beam efficiencies are 45±2%, 48±2%, 46±2%, and 41±2% at 86, 98, 110, and 115 GHz, respectively.

Abstract

We report the performance of the 13.7-meter Taeduk Radio Astronomy Observatory (TRAO) radio telescope. The telescope has been equipped with a new receiver, SEQUOIA-TRAO, a new backend system, FFT2G, and a new VxWorks operating system. The receiver system features a 16-pixel focal plane array using high-performance MMIC preamplifiers; it shows very low system noise levels, with system noise temperatures from 150 K to 450 K at frequencies from 86 to 115 GHz. With the new backend system, we can simultaneously obtain 32 spectra, each with a velocity coverage of 163 kms¯1 and a resolution of 0.04 kms¯1 at 115 GHz. The new operating system, VxWorks, has successfully handled the LMTMC-TRAO observing software. The main observing method is the on-the-fly (OTF) mapping mode; a position-switching mode is available for small-area observations. Remote observing is provided. The antenna surface has been newly adjusted using digital photogrammetry, achieving a rms surface accuracy better than 130 μm. The pointing uncertainty is found to be less than 500 over the entire sky. We tested the new receiver system with multi-frequency observations in OTF mode. The aperture efficiencies are 43±1%, 42±1%, 37±1%, and 33±1%, the beam efficiencies are 45±2%, 48±2%, 46±2%, and 41±2% at 86, 98, 110, and 115 GHz, respectively.

발행기관:
한국천문학회
DOI:
http://dx.doi.org/10.5303/JKAS.2019.52.6.227
분류:
천문학

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PERFORMANCE OF THE TRAO 13.7-M TELESCOPE WITH NEW SYSTEMS | Journal of the Korean Astronomical Society 2019 | AskLaw | 애스크로 AI