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Comparing the NEATM with a Rotating, Cratered Thermophysical Asteroid Model

1 Pith paper cite this work, alongside 6 external citations. Polarity classification is still indexing.

1 Pith paper citing it
6 external citations · Pith
abstract

A cratered asteroid acts somewhat like a retroflector, sending light and infrared radiation back toward the Sun, while thermal inertia in a rotating asteroid causes the infrared radiation to peak over the ``afternoon'' part. In this paper a rotating, cratered asteroid model is described, and used to generate infrared fluxes which are then interpreted using the Near Earth Asteroid Thermal Model (NEATM). Even though the rotating, cratered model depends on three parameters not available to the NEATM (the dimensionless thermal inertia parameter and pole orientation), the NEATM gives diameter estimates that are accurate to 10 percent RMS for phase angles less than 60 degrees. For larger phase angles, such as back-lit asteroids, the infrared flux depends more strongly on these unknown parameters, so the diameter errors are larger. These results are still true for the non-spherical shapes typical of small Near Earth objects.

fields

astro-ph.EP 1

years

2025 1

verdicts

UNVERDICTED 1

representative citing papers

Centaur Nuclei: Sizes, Shapes, Spins, and Structure

astro-ph.EP · 2025-06-04 · unverdicted · novelty 3.0

A review of Centaur physical properties concludes that discovery and albedo biases make the population's size distribution highly uncertain, while available lightcurves show mostly low-amplitude, near-spherical shapes.

citing papers explorer

Showing 1 of 1 citing paper.

  • Centaur Nuclei: Sizes, Shapes, Spins, and Structure astro-ph.EP · 2025-06-04 · unverdicted · none · ref 94 · internal anchor

    A review of Centaur physical properties concludes that discovery and albedo biases make the population's size distribution highly uncertain, while available lightcurves show mostly low-amplitude, near-spherical shapes.