On the Radiation Effects of Strontium Ions on Satellite Solar Cells in Low Earth Orbits

Fuente: arXiv
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Main Authors: Chen, Yue, Engel, Miles A., Jordanova, Vania K., Cowee, Misa M., Cunningham, Gregory S., Larson, David J.
Format: Preprint
Published: 2025
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_version_ 1866912373918400512
author Chen, Yue
Engel, Miles A.
Jordanova, Vania K.
Cowee, Misa M.
Cunningham, Gregory S.
Larson, David J.
author_facet Chen, Yue
Engel, Miles A.
Jordanova, Vania K.
Cowee, Misa M.
Cunningham, Gregory S.
Larson, David J.
contents This study focuses on the radiation effects of Sr+ ions--generated from high-altitude nuclear explosions (HANE)--on satellite solar cells in low-Earth orbits (LEO). Along four selected satellite orbits, ion fluences are sampled inside the evolving Sr+ ion distributions for days, determined from our newly developed HANE environment model. These fluences, along with the help of radiation transport codes including the MULASSIS and SRIM models, enable us to quantify the radiation damages by determining the values of total ionizing doses and the equivalent 1 MeV electron fluences for displacement damages. Comparing the dose values to existing experimental data, we conclude that HANE-generated Sr+ ions have limited darkening effects to quartz solar cell coverglasses in LEO with apogees of 100s to 1000 km. In addition, with the extremely high equivalent fluences, we also conclude that these Sr ions may cause severe or even fatal displacement damage to exposed solar photovoltaic (PV) cells on satellites in LEO. The radiation effects of Sr+ ions are much less significant for the orbits with high apogees beyond ten thousand km. We also conducted model parameter sensitivity studies on the charge exchange cross-sections, neutral atmosphere density profiles and explosion local time positions, and the above conclusions stay unchanged. The methodology developed in this study can be extended to other HANE-generated heavy ion species in the future.
format Preprint
id arxiv_https___arxiv_org_abs_2505_08749
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle On the Radiation Effects of Strontium Ions on Satellite Solar Cells in Low Earth Orbits
Chen, Yue
Engel, Miles A.
Jordanova, Vania K.
Cowee, Misa M.
Cunningham, Gregory S.
Larson, David J.
Space Physics
This study focuses on the radiation effects of Sr+ ions--generated from high-altitude nuclear explosions (HANE)--on satellite solar cells in low-Earth orbits (LEO). Along four selected satellite orbits, ion fluences are sampled inside the evolving Sr+ ion distributions for days, determined from our newly developed HANE environment model. These fluences, along with the help of radiation transport codes including the MULASSIS and SRIM models, enable us to quantify the radiation damages by determining the values of total ionizing doses and the equivalent 1 MeV electron fluences for displacement damages. Comparing the dose values to existing experimental data, we conclude that HANE-generated Sr+ ions have limited darkening effects to quartz solar cell coverglasses in LEO with apogees of 100s to 1000 km. In addition, with the extremely high equivalent fluences, we also conclude that these Sr ions may cause severe or even fatal displacement damage to exposed solar photovoltaic (PV) cells on satellites in LEO. The radiation effects of Sr+ ions are much less significant for the orbits with high apogees beyond ten thousand km. We also conducted model parameter sensitivity studies on the charge exchange cross-sections, neutral atmosphere density profiles and explosion local time positions, and the above conclusions stay unchanged. The methodology developed in this study can be extended to other HANE-generated heavy ion species in the future.
title On the Radiation Effects of Strontium Ions on Satellite Solar Cells in Low Earth Orbits
topic Space Physics
url https://arxiv.org/abs/2505.08749