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dc.contributor.authorEide, Sigurden_GB
dc.contributor.authorCasademont, Titusen_GB
dc.contributor.authorShoemaker, Emileigh S.en_GB
dc.contributor.authorBrovoll, Sverreen_GB
dc.contributor.authorBerger, Toren_GB
dc.contributor.authorDypvik, Henningen_GB
dc.contributor.authorHamran, Svein-Eriken_GB
dc.date.accessioned2024-10-18T08:52:16Z
dc.date.accessioned2024-11-21T14:07:13Z
dc.date.available2024-10-18T08:52:16Z
dc.date.available2024-11-21T14:07:13Z
dc.date.issued2024-07-02
dc.identifier.citationEide, Casademont, Shoemaker, Brovoll S, Berger T, Dypvik, Hamran S-E. Assessing Radar Attenuation in RIMFAX Soundings at the Jezero Western Fan Front, Mars. Geophysical Research Letters. 2024;51(13)en_GB
dc.identifier.urihttp://hdl.handle.net/20.500.12242/3361
dc.descriptionGeophysical Research Letters 2024 ;Volum 51.(13) s.en_GB
dc.description.abstractEstimates of radar attenuation in the shallow Martian subsurface are retrieved from RIMFAX soundings along the Perseverance rover traverse. Specifically, analyzed data is from the Hawksbill Gap area during the rover's first drives onto the Jezero Western Fan Front. The centroid frequency-shift method is employed to quantify attenuation in terms of the constant-Q approximation. Results are then compared with the amplitude decay method, which—in order to calculate attenuation—requires propagation velocities retrieved from radargram analysis. By verifying that results from two separate analyses are consistent, we ensure that quantified radar properties are well constrained. First estimate of constant-Q is 78.8 ± 11.6. For a subsurface propagation velocity of 0.113 m/ns, that equals an attenuation of −2.1 ± 0.4 dB/m at the RIMFAX 675 MHz center frequency. Results are consistent with dry sedimentary rocks, and are distinguishable from the magmatic lithologies on Jezero Crater Floor.en_GB
dc.language.isoenen_GB
dc.subjectRIMFAXen_GB
dc.subjectRadaren_GB
dc.titleAssessing Radar Attenuation in RIMFAX Soundings at the Jezero Western Fan Front, Marsen_GB
dc.date.updated2024-10-18T08:52:16Z
dc.identifier.cristinID2294318
dc.identifier.doi10.1029/2023GL106471
dc.source.issn0094-8276
dc.source.issn1944-8007
dc.type.documentJournal article
dc.relation.journalGeophysical Research Letters


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