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Updated: Apr 22, 2026

Scattering And Absorption of Light in Planetary Regoliths
Published on: July 1, 2019
Diamond-loaded polyimide aerogel scattering filters and their applications in astrophysical and planetary science
Kyle R Helson1,2, Carol Yan Yan Chan3, Stefan Arseneau4
1The University of Maryland, Baltimore County. Baltimore, Maryland 21250, USA.
Abstract:
Infrared-blocking, aerogel-based scattering filters have a broad range of potential applications in astrophysics and planetary science instruments in the far-infrared, sub-millimeter, and microwave regimes. This paper demonstrates the ability of conductively loaded, polyimide aerogel filters to meet the mechanical and science instrument requirements for several experiments, including the Cosmology Large Angular Scale Surveyor, the Experiment for Cryogenic Large-Aperture Intensity Mapping, and the Sub-millimeter Solar Observation Lunar Volatiles Experiment. Thermal multi-physics simulations of the filters predict their performance when integrated into a cryogenic receiver. Prototype filters have survived cryogenic cycling to 4 K with no degradation in mechanical properties. Measurement of total hemispherical reflectance and transmittance as well as cryogenic tests of the aerogel filters in a full receiver context allows estimates of the integrated infrared emissivity of the filters. Knowledge of the emissivity will help instrument designers incorporate the filters into future experiments in planetary science, astrophysics, and cosmology.

