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Related papers: Lunar impact craters identification and age estima…

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In the last 20 years, over 600 impact flashes have been documented on the lunar surface. This wealth of data presents a unique opportunity to study the meteoroid flux of the Earth-Moon environment, and in recent years the physical…

Earth and Planetary Astrophysics · Physics 2022-11-23 Daniel Sheward , Chrysa Avdellidou , Anthony Cook , Elliot Sefton-Nash , Marco Delbo , Bruno Cantarella , Luigi Zanatta

Multiple impact basins formed on the Moon about 3.8 Gyr ago in what is known as the lunar cataclysm or late heavy bombardment. Many workers currently interpret the lunar cataclysm as an impact spike primarily caused by main-belt asteroids…

Earth and Planetary Astrophysics · Physics 2011-02-02 Matija Cuk , Brett J. Gladman , Sarah T. Stewart

Pluto's surface displays a wide variety of geologic units from smooth plains to extremely rugged mountainous expanses. These terrains range in age from young, actively resurfaced regions (no observable craters even in the highest-resolution…

Earth and Planetary Astrophysics · Physics 2025-06-03 Kelsi N. Singer , Oliver L. White , Sarah Greenstreet , Jeffrey M. Moore , David A. Williams , Rosaly M. C. Lopes

Impact crater counts on the Saturnian satellites are a key element for estimating their surface ages and placing constraints on their impactor population. The Cassini mission radar observations allowed crater counts to be made on the…

Earth and Planetary Astrophysics · Physics 2022-05-31 N. L. Rossignoli , R. P. Di Sisto , M. G. Parisi

Small craters of the lunar maria are observed to be in a state of equilibrium, in which the rate of production of new craters is, on average, equal to the rate of destruction of old craters. Crater counts of multiple lunar terrains over…

Earth and Planetary Astrophysics · Physics 2019-03-20 David A. Minton , Caleb I. Fassett , Masatoshi Hirabayashi , Bryan A. Howl , James E. Richardson

The transfer of material between planetary bodies due to impact events is important for understanding planetary evolution, meteoroid impact fluxes, the formation of near-Earth objects (NEOs), and even the provenance of volatile and organic…

Earth and Planetary Astrophysics · Physics 2025-04-23 Jose Daniel Castro-Cisneros , Renu Malhotra , Aaron J. Rosengren

Almost all meteorite impacts occur at oblique incidence angles, but the effect of impact angle on crater size is not well understood, especially for large craters. To improve oblique impact crater scaling, we present a suite of simulations…

Earth and Planetary Astrophysics · Physics 2022-12-07 T. M. Davison , G. S. Collins

Giant impacts by comets and asteroids have probably had an important influence on terrestrial biological evolution. We know of around 180 high velocity impact craters on the Earth with ages up to 2400Myr and diameters up to 300km. Some…

Earth and Planetary Astrophysics · Physics 2015-05-28 C. A. L. Bailer-Jones

We determine the proportions of two mixed crater populations distinguishable by size distributions on the Moon. A "multiple power-law" model is built to formulate crater size distribution $N(D) \propto D^{-\alpha}$ whose slope $\alpha$…

Earth and Planetary Astrophysics · Physics 2019-07-23 Nan Wang , Ji-Lin Zhou

Three principal concepts regarding lunar formation have been examined: the accretion hypothesis, the mega-impact theory, and the multi-impact model. The multi-impact model amalgamates the salient facets of the mega-impact theory and the…

Earth and Planetary Astrophysics · Physics 2023-10-27 Nick Gorkavyi

Recently a number of studies have identified small lunar geologic structures to be <100 Ma in age using standard remote sensing techniques. Here we present new crater size frequency distributions (CSFD) and model ages using craters D> 10 m…

Earth and Planetary Astrophysics · Physics 2018-01-10 A. Valantinas , K. M. Kinch , A. Bridžius

Crater chronologies are a fundamental tool to assess relative and absolute ages of planetary surfaces when direct radiometric dating is not available. Martian crater chronologies are derived from lunar crater spatial densities on terrains…

Earth and Planetary Astrophysics · Physics 2021-03-24 Simone Marchi

The lunar crater record features $\sim 50$ basins. The radiometric dating of Apollo samples indicates that the Imbrium basin formed relatively late -- from the planet formation perspective -- some $\simeq 3.9$ Ga. Here we develop a…

Pluto's terrains display a diversity of crater retention ages ranging from areas with no identifiable craters to heavily cratered terrains. This variation in crater densities is consistent with geologic activity occurring throughout Pluto's…

Earth and Planetary Astrophysics · Physics 2022-01-26 Kelsi N. Singer , Sarah Greenstreet , Paul M. Schenk , Stuart J. Robbins , Veronica J. Bray

The leading-trailing asymmetry in lunar crater distribution provides a critical record of inner solar system dynamics, yet the long-standing discrepancy between the observed higher asymmetry and lower theoretical predictions indicates a gap…

Earth and Planetary Astrophysics · Physics 2026-05-12 Hailiang Li , Xiaoping Zhang , Li-Yong Zhou

We present a study on the relationship between the ratio of the depth of a crater to its diameter and the diameter for lunar craters both on the maria and on the highlands. We consider craters younger than 1.1 billion years in age, i.e. of…

Earth and Planetary Astrophysics · Physics 2021-03-02 E. A. Feoktistova , S. I. Ipatov

In this paper we present a new method for dating the surface of the Moon, obtained by modeling the incoming flux of impactors and converting it into a size distribution of resulting craters. We compare the results from this model with the…

Earth and Planetary Astrophysics · Physics 2015-05-13 S. Marchi , S. Mottola , G. Cremonese , M. Massironi , E. Martellato

The variation of remotely sensed neutron count rates is measured as a function of cratercentric distance using data from the Lunar Prospector Neutron Spectrometer. The count rate, stacked over many craters, peaks over the crater centre, has…

In the leading theory of lunar formation, known as the giant impact hypothesis, a collision between two planet-size objects resulted in a young Earth surrounded by a circumplanetary debris disk from which the Moon later accreted. The range…

Earth and Planetary Astrophysics · Physics 2023-07-13 Miles Timpe , Christian Reinhardt , Thomas Meier , Joachim Stadel , Ben Moore

The Moon is generally thought to have formed from the debris ejected by the impact of a planet-sized object with the proto-Earth towards the end of planetary accretion. Modeling of the impact process predicts that the lunar material was…

Earth and Planetary Astrophysics · Physics 2016-04-19 Kaveh Pahlevan , Alessandro Morbidelli