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Modeling Chandra Space EnvironmentThis paper describes the development of an environmental risk-mitigation tool for the Chandra X-ray Observatory's Advanced CCD Imaging Spectrometer (ACIS). Because exposure to 100-200 keV protons appears to have degraded the front-illuminated CCD's charge transfer inefficiency (CTI), an accurate tool for predicting encounters with magnetospheric regions rich in these particles is required. We implement standard models to predict bow-shock, magnetopause, and plasma-sheet boundaries. Using these models and solar-wind databases compiled from IMP-8 and ACE measurements, we then calculate the probability that Chandra is located in one of these regions, along with predicted particle flux, to arrive at appropriate safing times for the ACIS detector. Finally, we validate this tool by comparing the model's boundary-crossing and proton flux predictions with measurements from Chandra's on-board particle detector and with data from other spacecraft operating in the Earth's magnetosphere.
Document ID
20000038730
Acquisition Source
Marshall Space Flight Center
Document Type
Abstract
Authors
Blackwell, W. C.
(International Society for Optical Engineering United States)
Minow, J. I.
(International Society for Optical Engineering United States)
Warren, K.
(International Society for Optical Engineering United States)
Suggs, R. M.
(International Society for Optical Engineering United States)
ODell, S. L.
(International Society for Optical Engineering United States)
Swartz, D. A.
(International Society for Optical Engineering United States)
Tennant, A. F.
(International Society for Optical Engineering United States)
Virani, S. N.
(International Society for Optical Engineering United States)
Date Acquired
August 19, 2013
Publication Date
February 25, 2000
Subject Category
Astronomy
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.

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