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An Investigation on the Morphological and Mineralogical Characteristics of Posidonius Floor Fractured Lunar Impact Crater Using Lunar Remote Sensing Data

  • Imen Ben Salem
  • , Manish Sharma
  • , P. R. Kumaresan
  • , A. Karthi
  • , Fares M. Howari
  • , Yousef Nazzal
  • , Cijo M. Xavier
  • Zayed University
  • Bharathidasan University
  • Gandhigram Rural University

Research output: Contribution to journalArticlepeer-review

9 Scopus citations

Abstract

Lunar floor‐fractured craters (FFCs) are a distinguished type of crater found on the surface of the Moon with radial, concentric, and/or polygonal fractures. In the present study, we selected the Posidonius FCC to explore the mineralogy, morphology and tectonic characteristics using remote sensing datasets. The Posidonius crater is vested with a wide moat of lava separating the crater rim inner wall terraces from the fractured central floor. Lunar Reconnaissance Orbiter’s (LRO) images and Digital Elevation Model (DEM) data were used to map the tectonics and morphology of the present study. The Moon Mineralogy Mapper (M3) data of Chandrayaan‐1 were used to inves-tigate the mineralogy of the region through specified techniques such as integrated band depth, band composite and spectral characterization. The detailed mineralogical analysis indicates the nor-itic‐rich materials in one massif among four central peak rings and confirm intrusion (mafic pluton). Spectral analysis from the fresh crater of the Posidonius moat mare unit indicates clinopyroxene pigeonite in nature. Integrated studies of the mineralogy, morphology and tectonics revealed that the study region belongs to the Class‐III category of FFCs. The lithospheric loading by adjacent volcanic load (Serenitatis basin) generates a stress state and distribution of the fracture system.

Original languageEnglish
Article number814
JournalRemote Sensing
Volume14
Issue number4
DOIs
StatePublished - 1 Feb 2022
Externally publishedYes

Keywords

  • Floor fractured crater
  • Lunar
  • Lunar morphology
  • Mineralogy
  • Posidonius impact crater
  • Spectral analysis

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