ZivaHub + Deakin Research Online + DMU Figshare + HKU DataHub + Swinburne Figshare + DaYta Ya Rona + SUNScholarData + figshare + Loughborough Research Repository + GRANTS Data + UP Research Data Repository2026 · Astronomical catalogue
Supplementary Table 2 of Crater Morphometry Data<p dir="ltr">Supplementary Table 2 contains morphometric data for one hundred, 100-m-scale craters at the InSight landing site sorted by diameter and degradational state.</p>
ZivaHub + Deakin Research Online + DMU Figshare + HKU DataHub + Swinburne Figshare + DaYta Ya Rona + SUNScholarData + figshare + Loughborough Research Repository + GRANTS Data + UP Research Data Repository2026 · Astronomical catalogue
Supplementary Table 1 of Crater Morphometric Data<p dir="ltr">Supplementary Table 1 contains morphometric data for one hundred, 100-m-scale craters at the InSight landing site, as well as other historical landing sites. The data is unsorted.</p>
figshare + Loughborough Research Repository2026 · Astronomical catalogue
Automated Stratigraphy and Chronology Map of Lunar Mare Basalts<p dir="ltr">The ages and spatial characteristics of mare basalts are crucial for understanding lunar thermal evolution and volcanic activity. Currently, the spatiotemporal characteristics of mare basalts are commonly obtained through manual delineation of basalt units combined with the crater size-frequency distribution (CSFD) method. However, manual geological mapping is subjective and inefficie
figshare + Loughborough Research Repository2026 · Astronomical catalogue
Geological map, data, forward modeling code, and animation of CE5 landing region<p dir="ltr">Geological map, data, forward modeling code, and animation of CE5 landing region for Zhou et al. 2026 APJ</p><p dir="ltr">Citation:</p><p dir="ltr">Zhou, Z., et al., (2026), Forward modeling of thorium gamma-ray count rates in the Chang’e-5 landing zone. Astrophysical Journal, submitted.</p>
figshare + Loughborough Research Repository2026 · Astronomical catalogue
Original data for the manuscript entitled "<b>Carbonaceous Impact-Driven Rare Earth Mineral Formation in Chang’e-6 Lunar Soils</b>".<p dir="ltr">The original Atomic-resolution annular dark-field scanning TEM (ADF-STEM) and high-resolution (HR) TEM images, SAED patterns, and EELS data results used in the manuscript entitled "<b>Discovery of Rare Earth Element Mineralization on the Moon, a Potential urKREEP Component in Chang’e-6 Lunar Soil</b>" by Guo et al.</p>
figshare2026 · Astronomical catalogue
Dataset for Investigating the Fissure-Fed Volcanic System East of Arsia Mons, Tharsis, Mars<p dir="ltr">This dataset contains the remote-sensing imagery, geospatial data, and crater-counting outputs used to investigate the fissure-fed volcanic system and adjacent low-shield volcano east of Arsia Mons in the Tharsis region of Mars. It includes all CTX images and the HiRISE image used in the study.</p><p dir="ltr">The repository provides the files needed to reproduce the crater-count mode
figshare2026 · Astronomical catalogue
Supplementary information for the manuscript titled "An Impact-related origin for low-Ca pyroxene in a Chang’e-5 lunar troctolitic clast".<p dir="ltr">Supplementary Table 1. Mineral compositions (wt%) from exotic clast.</p><p dir="ltr">Supplementary Table 2. Quantification results of Atomicpercent (%) of TEX-EDX analysis on pyroxexs.</p><p dir="ltr">Supplementary Table 3. Major-element oxide data (wt%) from SEM-EDS line-scan analysis of olivine (Line 1) in the exotic troctolitic clast (corresponding to Fig. 1h).</p><p dir="ltr">Supp
figshare2026 · Astronomical catalogue
Catalog of sinuous rilles on Tharsis Montes' Rift Aprons, Mars<p dir="ltr">Sinuous rilles have been observed on the Moon, Venus, and Mars and appear to have been carved by hot, flowing lava. Sinuous rilles are observed on the slopes of three large shield volcanoes on Mars, collectively known as the Tharsis Montes, which occur in a line oriented NE-SW. Specifically, the sinuous rilles occur on the rift aprons - large fan-shaped deposits located to the southwe
figshare2026 · Astronomical catalogue
Lunar_Concentric_Craters_Gravity_Data<p dir="ltr">Derived data for analysis of gravity signatures of lunar concentric craters</p>
figshare2026 · Astronomical catalogue
Digitized Geological Contacts of the Aristarchus Plateau and Its Vicinity Derived from Zisk et al. (1977)<p dir="ltr">This dataset contains digitized geological contacts for the Aristarchus Plateau and its vicinity used in the associated study. The vector boundaries were manually digitized from the geological map published by Zisk et al. (1977) after the original map was georeferenced to the lunar coordinate system used in this study. The dataset is provided to support the reproducibility of the spat
figshare2026 · Astronomical catalogue
Chang’e-2 Microwave Radiometer Brightness Temperature and Brightness Temperature Difference Dataset for the Aristarchus Plateau and Its Vicinity<p dir="ltr">This dataset supports the study of the thermophysical characteristics and spatial extent of lunar pyroclastic deposits across the Aristarchus Plateau and its vicinity using Chang’e-2 Microwave Radiometer (MRM) observations. The dataset contains gridded brightness temperature (TB) products at 3.0, 7.8, 19.35, and 37.0 GHz for different lunar local-time intervals within the study area (
Teesside University Research Data Repository2025 · Astronomical catalogue
Analysis of Surface Age Dating Techniques and Uncertainties through Comparison of Independently Determined Crater Size-Frequency Distributions at Two Lunar Landing SitesDatasets supporting 2025 PSJ journal manuscript: Analysis of Surface Age Dating Techniques and Uncertainties through Comparison of Independently Determined Crater Size-Frequency Distributions at Two Lunar Landing Sites Thomas A. Giguere a*, Julie D. Stopar b, Jaclyn D. Clark c, Joseph M. Boyce a, and Jeffrey J. Gillis-Davis d a Hawaiʻi Institute of Geophysics and Planetology, Department of Earth S
Teesside University Research Data Repository2025 · Astronomical catalogue
Supplementary material for the article "Asteroid Itokawa … but when and how did it form exactly?"The Supplementary material includes a Supplementary Text describing in details the Scanning electron microscopy methods, the Simultaneous electron backscatter diffraction and energy dispersive spectroscopy mapping and the Backscattered electron and secondary electron imaging. It also includes a caption for the supplementary datasets. Full 40Ar/39Ar dataset for each of the three particles are provi
Teesside University Research Data Repository2024 · Astronomical catalogue
Extended Silicic Volcanism in the Gruithuisen Region—Revisiting the Composition and Thermophysical Properties of Gruithuisen Domes on the MoonDatasets and shapefiles used in the paper. Please cite https://iopscience.iop.org/article/10.3847/PSJ/ad4352 if you use this dataset
Teesside University Research Data Repository2020 · Astronomical catalogue
SPRING Mission Science Traceability Matrix (STM)The Surface Probe Rover Investigating New Ground (SPRING) Science Traceability Matrix (STM) maps the relationship among NASA science goals, SPRING mission aims and mission instrument performance. NASA science goals, SPRING mission objectives, instrumentation and functional requirements are provided in a comprehensive table.
Teesside University Research Data Repository2019 · Astronomical catalogue
Data for: A Search for Early- to Mid-Noachian Chloride-rich Deposits on MarsExcel file tabulating the observation IDs of the CRISM targeted observations analyzed, mineral identifications, the start coordinates of the regions of interest, and the sizes of the regions of interest. Text files giving wavelengths in nanometers of the CRISM data, I/F of the chloride and phyllosilicate spectra in Figure 2, I/F of a nearby spectrally bland region, and the ratio spectrum.
IVOA Registry (Virtual Observatory)2017 · Astronomical catalogue
Mars CratersThe Mars Crater Catalog by S.J. Robbins was generated from THEMIS Daytime IR and Viking MDIM 2.1 global mosaics of Mars. Craters were selected using 5 points along the rim. The table is statistically complete to the diameter of ~1.0 km. The table contains morphologic and morphometric data for craters with diameter larger than 3 km. The Prometheus basin has been excluded from the Catalog due to tec
DataCite2014 · Astronomical catalogue
Kitchens Law of SuperpositionLaws that cannot be broken, but allow space to be diviorced from time.
DataCite2014 · Astronomical catalogue
A whole in Special RelitivityA whole in Special Relitivity
DataCite2014 · Astronomical catalogue
Expanding on the 1st example of the train scenarioExpanding on the 1st example of the train scenario
DataCite2014 · Astronomical catalogue
A whole in Special RelitivityA whole in Special Relitivity
DataCite2014 · Astronomical catalogue
Best Practices for Data Publication to Facilitate Integration into NED: A Reference Guide for AuthorsWe provide an overview of challenges encountered in ongoing efforts to improve the automation, efficiency, and accuracy of the procedures required to extract, transform, cross-identify, and integrate data from the electronic astrophysics literature into the NASA/IPAC Extragalactic Database (NED). Recommendations for best practices for publishing data are provided, from the perspective of the NED t
DataCite2014 · Astronomical catalogue
A whole in Special RelitivityA whole in Special Relitivity