TY - JOUR
T1 - The Brac/Dourbes Olivine-Cumulate Rock, Séítah Formation, Jezero Crater Floor, Mars
T2 - Its Parent Magma, and Relation to Basalts of the Máaz Formation
AU - Treiman, Allan H.
AU - Hernández-Montenegro, Juan D.
AU - Wiens, Roger C.
AU - Wade, Larry
AU - VanBommel, Scott
AU - Van Beek, Jason
AU - Udry, Arya
AU - Tice, Mike M.
AU - Schmidt, Mariek E.
AU - Moore, Kelsey
AU - Liu, Yang
AU - Lawson, Peter
AU - Knight, Abigail
AU - Klevang, David Arge
AU - Kizovski, Tanya
AU - Jones, Michael M.W.
AU - Hurowitz, Joel A.
AU - Hodyss, Robert
AU - Henneke, Jesper
AU - Flannery, David
AU - Denise, Robert
AU - Debaille, Vinciane
AU - Cable, Morgan L.
AU - Brown, Adrian
AU - Beyssac, Olivier
AU - Asimow, Paul
AU - Allwood, Abigail C.
N1 - Publisher Copyright:
© 2025. American Geophysical Union. All Rights Reserved.
PY - 2025/4
Y1 - 2025/4
N2 - The Mars 2020 rover, Perseverance, encountered a range of basaltic igneous rocks on the floor of Jezero crater, two of which are olivine cumulates, formed by accumulation of olivine crystals from basaltic magma. These olivine cumulates lie in a geomorphically distinct region, named Séítah, on the Jezero crater floor. To understand the origin of the olivine cumulates and their relationship with the adjacent basalts of the Máaz formation, we calculated the composition of the parent magma of one of the olivine cumulates, named Brac, based on chemical analyses and mineralogic interpretations from the Planetary Instrument for X-ray Lithochemistry (PIXL) instrument. Acceptable Brac/Dourbes parent magmas are olivine tholeiite basalts with SiO2 ∼ 45%, MgO ∼ 8%, FeOTot ∼ 27%, Al2O3 ∼ 6%, and total alkali oxides of ∼2.8% weight. These compositions are similar to one of the Máaz basalts, the rock Rimplas, which is stratigraphically close to Séítah, but chemically distinct from other Máaz basalts. Rimplas could (within uncertainty) be a sample of the Brac parent magma, but it is more likely that Rimplas and Brac had a common (or similar) parent magma. Geochemical similarities between Rimplas and the other Máaz basalts thus suggest that Brac (and other olivine-rich rocks of Séítah) and the Máaz basalts could be geochemically related; they could have been cogenetic and possibly contemporaneous, or could have been derived (at different times) from similar or related mantle source(s).
AB - The Mars 2020 rover, Perseverance, encountered a range of basaltic igneous rocks on the floor of Jezero crater, two of which are olivine cumulates, formed by accumulation of olivine crystals from basaltic magma. These olivine cumulates lie in a geomorphically distinct region, named Séítah, on the Jezero crater floor. To understand the origin of the olivine cumulates and their relationship with the adjacent basalts of the Máaz formation, we calculated the composition of the parent magma of one of the olivine cumulates, named Brac, based on chemical analyses and mineralogic interpretations from the Planetary Instrument for X-ray Lithochemistry (PIXL) instrument. Acceptable Brac/Dourbes parent magmas are olivine tholeiite basalts with SiO2 ∼ 45%, MgO ∼ 8%, FeOTot ∼ 27%, Al2O3 ∼ 6%, and total alkali oxides of ∼2.8% weight. These compositions are similar to one of the Máaz basalts, the rock Rimplas, which is stratigraphically close to Séítah, but chemically distinct from other Máaz basalts. Rimplas could (within uncertainty) be a sample of the Brac parent magma, but it is more likely that Rimplas and Brac had a common (or similar) parent magma. Geochemical similarities between Rimplas and the other Máaz basalts thus suggest that Brac (and other olivine-rich rocks of Séítah) and the Máaz basalts could be geochemically related; they could have been cogenetic and possibly contemporaneous, or could have been derived (at different times) from similar or related mantle source(s).
KW - Jezero
KW - Mars
KW - Séítah
KW - igneous cumulate
KW - parent magma
UR - https://www.scopus.com/pages/publications/105003821641
U2 - 10.1029/2024JE008539
DO - 10.1029/2024JE008539
M3 - Article
AN - SCOPUS:105003821641
SN - 2169-9097
VL - 130
JO - Journal of Geophysical Research: Planets
JF - Journal of Geophysical Research: Planets
IS - 4
M1 - e2024JE008539
ER -