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Extended Silicic Volcanism in the Gruithuisen Region—Revisiting the Composition and Thermophysical Properties of Gruithuisen Domes on the Moon

Abstract:
The formation mechanisms, extent, and compositions of red spots on the lunar surface have intrigued the lunar community for decades. By identifying a new dome and another silicic crater in the highlands nearby, we find that the silicic volcanism in the Gruithuisen region extends beyond the three major domes. Our observations indicate that the Gruithuisen domes have low iron and titanium contents. They are enveloped by ejecta from surrounding regions and host silica-rich material excavated by the young craters consistent with previous work. Our boulder maps of the Gamma dome display a high boulder count and indicate that the Diviner rock abundance maps are only sensitive to boulders larger than ∼2 m. The H-parameter values are sensitive to presence of rocks and may be a better indicator of rocks at submeter scales. The Delta dome has gentle slopes, lower rock abundance, and one young crater, and it could serve as a safe and scientifically valuable site for landing and exploration of the domes and nearby region. The dome also displays anomalously high H-parameter in the same region as the crater, indicating the potential presence of pyroclastic materials. We observe up to 200 ppm of OH/H2O on the domes and nearby mare despite the presence of a weak magnetic field to the south of Delta dome, further supporting the potential presence of pyroclastics in the region. This study could potentially aid in logistical and scientific decisions of the future NASA missions in the region.
Publication status:
Published
Peer review status:
Peer reviewed

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Publisher copy:
10.3847/psj/ad4352

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Role:
Author
ORCID:
0000-0001-5960-0914
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Role:
Author
ORCID:
0000-0002-8187-3609
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Role:
Author
ORCID:
0000-0003-4163-2760


Publisher:
IOP Publishing
Journal:
The Planetary Science Journal More from this journal
Volume:
5
Issue:
6
Article number:
132
Publication date:
2024-06-07
Acceptance date:
2024-04-23
DOI:
EISSN:
2632-3338


Language:
English
Keywords:
Source identifiers:
2025016
Deposit date:
2024-06-07

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