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  1. Dennis O. Thorbourn Radiation hardened linear devices were characterized for performance in combined total dose and displacement damage environments for a mission scenario with a high...

  2. Also published under: D. Thorbourn, Dennis O. Thorbourn, D. O. Thorbourn Affiliation Jet Propulsion Laboratory, California Institute of Technology, Pasadena, CA, USA

  3. Jet Propulsion Laboratory, California Institute of Technology, 4800 Oak Grove Dr., Pasadena, CA 91109, U.S.A., dennis.o.thorbourn@jpl.nasa.gov * Corresponding Author . Abstract.

  4. Additionally, we would like to extend our gratitude to James Chinn, Wousik Kim, Allen Andersen, Dennis Thorbourn, and Eduardo Martin of JPL as well as Stephen Brown, Kenneth O’Connor, and Robert Meloy of GSFC for their invaluable help with IESD analysis and testing.

  5. We report the effects of high energy electron and proton radiation on perovskite solar cells. For irradiation with 1 MeV electrons, at fluence from 10^ (12) to 10^ (16) cm^ (−2), there are no significant changes in the morphology and the crystal phase in the perovskites, and the perovskite solar cells show only slight degradation in ...

  6. Sep 1, 2023 · Radiation-Induced Conductivity (RIC) is an important dielectric property for evaluating the likelihood of electrostatic discharge (ESD) due to radiation in the space environment. Since RIC can… Expand. 1 Excerpt. Results of Radiation-Induced Conductivity Testing of Europa Clipper Dielectric Materials.

  7. Low-intensity low-temperature analysis of perovskite solar cells for deep space applications. †. High specific power (power per mass) ultralight solar arrays made of perovskite solar cells (PSCs) are being considered to power spacecraft in deep space conditions as far as Neptune (30 AU).