Published September 2013 | Version public
Journal Article

Lunar topographic roughness maps from Lunar Orbiter Laser Altimeter (LOLA) data: Scale dependence and correlation with geologic features and units

  • 1. ROR icon University of California, Santa Cruz
  • 2. ROR icon Brown University
  • 3. ROR icon Goddard Space Flight Center
  • 4. ROR icon California Institute of Technology
  • 5. ROR icon Weizmann Institute of Science
  • 6. ROR icon Massachusetts Institute of Technology

Abstract

We present maps of the topographic roughness of the Moon at hectometer and kilometer scales. The maps are derived from range profiles obtained by the Lunar Orbiter Laser Altimeter (LOLA) instrument onboard the Lunar Reconnaissance Orbiter (LRO) spacecraft. As roughness measures, we used the interquartile range of profile curvature at several baselines, from 115 m to 1.8 km, and plotted these in a global map format. The maps provide a synoptic overview of variations of typical topographic textures and utilize the exceptional ranging precision of the LOLA instrument. We found that hectometer-scale roughness poorly correlates with kilometer-scale roughness, because they reflect different sets of processes and time scales. Hectometer-scale roughness is controlled by regolith accumulation and modification processes and affected by the most recent events, primarily, geologically recent (1–2 Ga) meteoritic impacts. Kilometer-scale roughness reflects major geological (impact, volcanic and tectonic) events in earlier geological history. Young large impact craters are rough, and their roughness decreases with age. The global roughness maps revealed a few unusually dense clusters of hectometer- and decameter-size impact craters that differ in their morphology and settings from typical secondary crater clusters and chains; the origin of these features is enigmatic. The maps can assist in the geological mapping of the lunar maria by revealing contacts between volcanic plain units. The global roughness maps also clearly reveal cryptomaria, old volcanic plains superposed by younger materials, primarily crater and basin ejecta.

Additional Information

© 2013 Elsevier. Received 2 November 2012. Revised 8 March 2013. Accepted 20 April 2013. Available online 3 May 2013. Discussions with Yuriy Shkuratov and Erik Asphaug were helpful. We acknowledge financial support from the NASA Lunar Reconnaissance Orbiter Lunar Orbiter Laser Altimeter (LOLA) experiment (NNX09AM54G and NNX11AK29G to J.W.H.) and the NASA Lunar Science Institute.

Additional details

Identifiers

Eprint ID
42199
Resolver ID
CaltechAUTHORS:20131101-140017972

Funding

NASA
NNX09AM54G
NASA
NNX11AK29G

Dates

Created
2013-11-01
Created from EPrint's datestamp field
Updated
2023-03-07
Created from EPrint's last_modified field