Observations of Atmospheric Helium and Oxygen with SPHEREx

Fuente: arXiv
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Autori principali: Hui, Howard, Nguyen, Chi, Wills, Ryan, Bossert, Katrina, Bryan, Sean, Bach, Yoonsoo, Bock, Jamie, Chang, Tzu-Ching, Chen, Shuang-Shuang, Cooray, Asantha, Crill, Brendan, Doré, Olivier, Dowell, C. Darren, Faisst, Andreas, Kang, Jae Hwan, Korngut, Phil, Lisse, Carey, Masters, Dan, Paladini, Roberta, Tolls, Volker, Werner, Michael, Yang, Yujin, Zemcov, Mike
Natura: Preprint
Pubblicazione: 2026
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author Hui, Howard
Nguyen, Chi
Wills, Ryan
Bossert, Katrina
Bryan, Sean
Bach, Yoonsoo
Bock, Jamie
Chang, Tzu-Ching
Chen, Shuang-Shuang
Cooray, Asantha
Crill, Brendan
Doré, Olivier
Dowell, C. Darren
Faisst, Andreas
Kang, Jae Hwan
Korngut, Phil
Lisse, Carey
Masters, Dan
Paladini, Roberta
Tolls, Volker
Werner, Michael
Yang, Yujin
Zemcov, Mike
author_facet Hui, Howard
Nguyen, Chi
Wills, Ryan
Bossert, Katrina
Bryan, Sean
Bach, Yoonsoo
Bock, Jamie
Chang, Tzu-Ching
Chen, Shuang-Shuang
Cooray, Asantha
Crill, Brendan
Doré, Olivier
Dowell, C. Darren
Faisst, Andreas
Kang, Jae Hwan
Korngut, Phil
Lisse, Carey
Masters, Dan
Paladini, Roberta
Tolls, Volker
Werner, Michael
Yang, Yujin
Zemcov, Mike
contents We present measurements of near-infrared (NIR) terrestrial airglow produced by helium and oxygen in the exosphere as observed by SPHEREx. Using eight months of survey data obtained from a 680 km low-Earth orbit, emission from HeI $λ$10830, OI $λ$8446, and OI $λ$11287 is mapped with both global spatial and multi-season temporal coverage. These measurements are obtained along upward looking lines of sight as part of the astrophysical survey, in contrast to conventional nadir-viewing Earth remote sensing, which probes the behavior of low-density material in the thermo- and exosphere. We describe an analytical framework to extract atmospheric emission lines in the presence of astrophysical backgrounds including stars, resolved galaxies, and the diffuse Zodiacal light. The resulting global measurements reveal temporal variability over the survey period and systematic dependencies on geographic location. We interpret these variations in the context of the variable Solar illumination and seasonal effects. SPHEREx, an astrophysical space observatory, is demonstrated to be a promising new platform for monitoring NIR airglow and investigating its coupling to Solar activity and global geophysical processes.
format Preprint
id arxiv_https___arxiv_org_abs_2605_00851
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Observations of Atmospheric Helium and Oxygen with SPHEREx
Hui, Howard
Nguyen, Chi
Wills, Ryan
Bossert, Katrina
Bryan, Sean
Bach, Yoonsoo
Bock, Jamie
Chang, Tzu-Ching
Chen, Shuang-Shuang
Cooray, Asantha
Crill, Brendan
Doré, Olivier
Dowell, C. Darren
Faisst, Andreas
Kang, Jae Hwan
Korngut, Phil
Lisse, Carey
Masters, Dan
Paladini, Roberta
Tolls, Volker
Werner, Michael
Yang, Yujin
Zemcov, Mike
Atmospheric and Oceanic Physics
Earth and Planetary Astrophysics
Instrumentation and Methods for Astrophysics
Space Physics
We present measurements of near-infrared (NIR) terrestrial airglow produced by helium and oxygen in the exosphere as observed by SPHEREx. Using eight months of survey data obtained from a 680 km low-Earth orbit, emission from HeI $λ$10830, OI $λ$8446, and OI $λ$11287 is mapped with both global spatial and multi-season temporal coverage. These measurements are obtained along upward looking lines of sight as part of the astrophysical survey, in contrast to conventional nadir-viewing Earth remote sensing, which probes the behavior of low-density material in the thermo- and exosphere. We describe an analytical framework to extract atmospheric emission lines in the presence of astrophysical backgrounds including stars, resolved galaxies, and the diffuse Zodiacal light. The resulting global measurements reveal temporal variability over the survey period and systematic dependencies on geographic location. We interpret these variations in the context of the variable Solar illumination and seasonal effects. SPHEREx, an astrophysical space observatory, is demonstrated to be a promising new platform for monitoring NIR airglow and investigating its coupling to Solar activity and global geophysical processes.
title Observations of Atmospheric Helium and Oxygen with SPHEREx
topic Atmospheric and Oceanic Physics
Earth and Planetary Astrophysics
Instrumentation and Methods for Astrophysics
Space Physics
url https://arxiv.org/abs/2605.00851