Investigation of a resistive anode detector for astronomical spectroscopy

A large format two dimensional photon counting detector has been evaluated as a detector for astronomical spectroscopy. The design comprises an 320 photocathode, a tandem MCP gain stage and a circular arc terminated resisitive anode to provide pOSitional coordinates of detected events. The system is...

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Bibliographic Details
Main Author: Clampin, Mark
Other Authors: Edwin, R. P.
Published: University of St Andrews 1986
Subjects:
520
Online Access:http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.571484
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spelling ndltd-bl.uk-oai-ethos.bl.uk-5714842016-09-03T03:32:02ZInvestigation of a resistive anode detector for astronomical spectroscopyClampin, MarkEdwin, R. P.1986A large format two dimensional photon counting detector has been evaluated as a detector for astronomical spectroscopy. The design comprises an 320 photocathode, a tandem MCP gain stage and a circular arc terminated resisitive anode to provide pOSitional coordinates of detected events. The system is run from an LSI 11/23 computer operating under FORTH control. The micro-channel plate operating characteristics and the detector's resolution, quantum efficiency and imaging performance have been studied. The principal areas requiring design improvement are found to be the micro-channel plate gain, processing and photocathode quality. electronic signal The detector has been employed in a observing program on a 0.5 m telescope. Spectra of IAU faint radial velocity standards and the eclipsing binary system s-l Cam have been obtained and analysed to assess the system's performance.520QB465.A6C6University of St Andrewshttp://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.571484http://hdl.handle.net/10023/7110Electronic Thesis or Dissertation
collection NDLTD
sources NDLTD
topic 520
QB465.A6C6
spellingShingle 520
QB465.A6C6
Clampin, Mark
Investigation of a resistive anode detector for astronomical spectroscopy
description A large format two dimensional photon counting detector has been evaluated as a detector for astronomical spectroscopy. The design comprises an 320 photocathode, a tandem MCP gain stage and a circular arc terminated resisitive anode to provide pOSitional coordinates of detected events. The system is run from an LSI 11/23 computer operating under FORTH control. The micro-channel plate operating characteristics and the detector's resolution, quantum efficiency and imaging performance have been studied. The principal areas requiring design improvement are found to be the micro-channel plate gain, processing and photocathode quality. electronic signal The detector has been employed in a observing program on a 0.5 m telescope. Spectra of IAU faint radial velocity standards and the eclipsing binary system s-l Cam have been obtained and analysed to assess the system's performance.
author2 Edwin, R. P.
author_facet Edwin, R. P.
Clampin, Mark
author Clampin, Mark
author_sort Clampin, Mark
title Investigation of a resistive anode detector for astronomical spectroscopy
title_short Investigation of a resistive anode detector for astronomical spectroscopy
title_full Investigation of a resistive anode detector for astronomical spectroscopy
title_fullStr Investigation of a resistive anode detector for astronomical spectroscopy
title_full_unstemmed Investigation of a resistive anode detector for astronomical spectroscopy
title_sort investigation of a resistive anode detector for astronomical spectroscopy
publisher University of St Andrews
publishDate 1986
url http://ethos.bl.uk/OrderDetails.do?uin=uk.bl.ethos.571484
work_keys_str_mv AT clampinmark investigationofaresistiveanodedetectorforastronomicalspectroscopy
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