Design and analysis of the Astrometric Telescope Facility.

The Astrometric Telescope Facility (ATF) is designed to be a space-based facility searching for planets and extra solar planetary systems. In order to be able to positively identify other planetary systems such as Uranus/Neptune-class planets, the ATF is required to be capable of surveying approxima...

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Main Author: Huang, Chunsheng.
Other Authors: Lawrence, George
Language:en
Published: The University of Arizona. 1990
Subjects:
Online Access:http://hdl.handle.net/10150/184994
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spelling ndltd-arizona.edu-oai-arizona.openrepository.com-10150-1849942015-10-23T04:30:29Z Design and analysis of the Astrometric Telescope Facility. Huang, Chunsheng. Lawrence, George Levy, Eugene Koliopoulis, Chris Physics The Astrometric Telescope Facility (ATF) is designed to be a space-based facility searching for planets and extra solar planetary systems. In order to be able to positively identify other planetary systems such as Uranus/Neptune-class planets, the ATF is required to be capable of surveying approximately 100 stars within about 10 parsecs of the earth, of measuring a change in the relative position of stars to an accuracy of 10 microarcseconds, and of being stable for about 10 to 20 years. The ATF approach to astrometry is to modulate the intensity on the focal plane of the telescope by a moving Ronchi ruling or grating and then to determine the relative star positions from the phases of the modulated signals. This approach reduces boise from background stray light and reduces random noise by averaging over many measurements. The optical performance of the ATF system has been modeled mathematically using the concept of the system transfer function. Each subsystem has been studied analytically. The relationship between the measured parameter and aberrations of the system has been established analytically. Error sources from the system have been identified and calibration for the system is provided. Design and optimization for the astrometric telescope and gratings have been investigated. The key issues to reach the 10 microarcseconds are addressed. 1990 text Dissertation-Reproduction (electronic) http://hdl.handle.net/10150/184994 708084140 9024505 en Copyright © is held by the author. Digital access to this material is made possible by the University Libraries, University of Arizona. Further transmission, reproduction or presentation (such as public display or performance) of protected items is prohibited except with permission of the author. The University of Arizona.
collection NDLTD
language en
sources NDLTD
topic Physics
spellingShingle Physics
Huang, Chunsheng.
Design and analysis of the Astrometric Telescope Facility.
description The Astrometric Telescope Facility (ATF) is designed to be a space-based facility searching for planets and extra solar planetary systems. In order to be able to positively identify other planetary systems such as Uranus/Neptune-class planets, the ATF is required to be capable of surveying approximately 100 stars within about 10 parsecs of the earth, of measuring a change in the relative position of stars to an accuracy of 10 microarcseconds, and of being stable for about 10 to 20 years. The ATF approach to astrometry is to modulate the intensity on the focal plane of the telescope by a moving Ronchi ruling or grating and then to determine the relative star positions from the phases of the modulated signals. This approach reduces boise from background stray light and reduces random noise by averaging over many measurements. The optical performance of the ATF system has been modeled mathematically using the concept of the system transfer function. Each subsystem has been studied analytically. The relationship between the measured parameter and aberrations of the system has been established analytically. Error sources from the system have been identified and calibration for the system is provided. Design and optimization for the astrometric telescope and gratings have been investigated. The key issues to reach the 10 microarcseconds are addressed.
author2 Lawrence, George
author_facet Lawrence, George
Huang, Chunsheng.
author Huang, Chunsheng.
author_sort Huang, Chunsheng.
title Design and analysis of the Astrometric Telescope Facility.
title_short Design and analysis of the Astrometric Telescope Facility.
title_full Design and analysis of the Astrometric Telescope Facility.
title_fullStr Design and analysis of the Astrometric Telescope Facility.
title_full_unstemmed Design and analysis of the Astrometric Telescope Facility.
title_sort design and analysis of the astrometric telescope facility.
publisher The University of Arizona.
publishDate 1990
url http://hdl.handle.net/10150/184994
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