Mineral False Positives in the Search for Exoplanet Surface Biosignatures

Fuente: arXiv
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Main Authors: Parkinson, Mia Belle, Kaltenegger, Lisa, Biller, Beth, Lach, Grant, McMahon, Sean
Format: Preprint
Published: 2026
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author Parkinson, Mia Belle
Kaltenegger, Lisa
Biller, Beth
Lach, Grant
McMahon, Sean
author_facet Parkinson, Mia Belle
Kaltenegger, Lisa
Biller, Beth
Lach, Grant
McMahon, Sean
contents In the search for life in the cosmos, biopigments on exoplanet surfaces are a critical target. Such pigments have been detected in Earth's spectrum (by the Galileo spacecraft and in Earthshine) via the "vegetation" or "photosynthesis red edge" (VRE or PRE), a sharp, step-like increase in reflectance with increasing wavelength at ~700 nm. Future space telescopes like the Habitable Worlds Observatory (HWO) are designed to obtain disk-integrated spectra of Earth-like exoplanets in the visible-to-near-infrared to identify such features. However, there has been no systematic analysis of the occurrence of similar reflectance edges among minerals of non-biological origin. Here, we use existing databases of mineral reflectance spectra to explore the risk that minerals may present false positives in the search for biopigments on exoplanets. We find that several sulfide and tectosilicate minerals, as well as the prebiotically important cyanide salt, potassium ferrocyanide, have PRE-like features. We characterize these features in order to assess how they may be distinguished from biopigments. We conclude that the future evaluation of the biogenicity of PRE-like features in exoplanet reflectance spectra can be informed by the atmospheric context, but may require an assessment of the prior probability of non-biological and biological hypotheses about the surface materials of exoplanets.
format Preprint
id arxiv_https___arxiv_org_abs_2605_10646
institution arXiv
publishDate 2026
record_format arxiv
spellingShingle Mineral False Positives in the Search for Exoplanet Surface Biosignatures
Parkinson, Mia Belle
Kaltenegger, Lisa
Biller, Beth
Lach, Grant
McMahon, Sean
Earth and Planetary Astrophysics
In the search for life in the cosmos, biopigments on exoplanet surfaces are a critical target. Such pigments have been detected in Earth's spectrum (by the Galileo spacecraft and in Earthshine) via the "vegetation" or "photosynthesis red edge" (VRE or PRE), a sharp, step-like increase in reflectance with increasing wavelength at ~700 nm. Future space telescopes like the Habitable Worlds Observatory (HWO) are designed to obtain disk-integrated spectra of Earth-like exoplanets in the visible-to-near-infrared to identify such features. However, there has been no systematic analysis of the occurrence of similar reflectance edges among minerals of non-biological origin. Here, we use existing databases of mineral reflectance spectra to explore the risk that minerals may present false positives in the search for biopigments on exoplanets. We find that several sulfide and tectosilicate minerals, as well as the prebiotically important cyanide salt, potassium ferrocyanide, have PRE-like features. We characterize these features in order to assess how they may be distinguished from biopigments. We conclude that the future evaluation of the biogenicity of PRE-like features in exoplanet reflectance spectra can be informed by the atmospheric context, but may require an assessment of the prior probability of non-biological and biological hypotheses about the surface materials of exoplanets.
title Mineral False Positives in the Search for Exoplanet Surface Biosignatures
topic Earth and Planetary Astrophysics
url https://arxiv.org/abs/2605.10646