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Updated: Mar 19, 2026

Scattering And Absorption of Light in Planetary Regoliths
Published on: July 1, 2019
Particle types and energy influence on the radiation response of charge coupled devices used for space optical
Abstract:
A CCD has been manufactured using domestic CCD technology for space optical imaging applications. To evaluate the radiation resistance potential of the CCD, the CCDs were irradiated with various particles (i.e., protons, neutrons, electrons, and γ-rays). Total ionizing dose (TID), displacement damage (DD) effects, and their synergistic effects are investigated through the characterization and analysis of dark signal and charge transfer efficiency. It is shown that DD-induced dark signal increase and charge transfer efficiency degradation are greater than those of TID. There is a linear relation between parameter degradation and absorbed dose in the case of DD, but such a linear relationship does not exist in the case of TID, suggesting that the prediction of the radiation damage extent of DD is available compared to the TID effects. Furthermore, it is demonstrated that there is a synergistic effect of DD and TID, and this effect behaves as the enhancement of the radiation degradation extent on the CCD.
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