Purple is the new green: biopigments and spectra of Earth-like purple worlds

Fuente: arXiv
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Hauptverfasser: Coelho, Ligia Fonseca, Kaltenegger, Lisa, Zinder, Stephen, Philpot, William, Price, Taylor L., Hamilton, Trinity L.
Format: Preprint
Veröffentlicht: 2024
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author Coelho, Ligia Fonseca
Kaltenegger, Lisa
Zinder, Stephen
Philpot, William
Price, Taylor L.
Hamilton, Trinity L.
author_facet Coelho, Ligia Fonseca
Kaltenegger, Lisa
Zinder, Stephen
Philpot, William
Price, Taylor L.
Hamilton, Trinity L.
contents With more than 5500 detected exoplanets, the search for life is entering a new era. Using life on Earth as our guide, we look beyond green landscapes to expand our ability to detect signs of surface life on other worlds. While oxygenic photosynthesis gives rise to modern green landscapes, bacteriochlorophyll-based anoxygenic phototrophs can also colour their habitats and could dominate a much wider range of environments on Earth-like exoplanets. Here, we characterize the reflectance spectra of a collection of purple sulfur and purple non-sulfur bacteria from a variety of anoxic and oxic environments. We present models for Earth-like planets where purple bacteria dominate the surface and show the impact of their signatures on the reflectance spectra of terrestrial exoplanets. Our research provides a new resource to guide the detection of purple bacteria and improves our chances of detecting life on exoplanets with upcoming telescopes. Our biological pigment data base for purple bacteria and the high-resolution spectra of Earth-like planets, including ocean worlds, snowball planets, frozen worlds, and Earth analogues, are available online, providing a tool for modellers and observers to train retrieval algorithms, optimize search strategies, and inform models of Earth-like planets, where purple is the new green.
format Preprint
id arxiv_https___arxiv_org_abs_2404_10105
institution arXiv
publishDate 2024
record_format arxiv
spellingShingle Purple is the new green: biopigments and spectra of Earth-like purple worlds
Coelho, Ligia Fonseca
Kaltenegger, Lisa
Zinder, Stephen
Philpot, William
Price, Taylor L.
Hamilton, Trinity L.
Earth and Planetary Astrophysics
With more than 5500 detected exoplanets, the search for life is entering a new era. Using life on Earth as our guide, we look beyond green landscapes to expand our ability to detect signs of surface life on other worlds. While oxygenic photosynthesis gives rise to modern green landscapes, bacteriochlorophyll-based anoxygenic phototrophs can also colour their habitats and could dominate a much wider range of environments on Earth-like exoplanets. Here, we characterize the reflectance spectra of a collection of purple sulfur and purple non-sulfur bacteria from a variety of anoxic and oxic environments. We present models for Earth-like planets where purple bacteria dominate the surface and show the impact of their signatures on the reflectance spectra of terrestrial exoplanets. Our research provides a new resource to guide the detection of purple bacteria and improves our chances of detecting life on exoplanets with upcoming telescopes. Our biological pigment data base for purple bacteria and the high-resolution spectra of Earth-like planets, including ocean worlds, snowball planets, frozen worlds, and Earth analogues, are available online, providing a tool for modellers and observers to train retrieval algorithms, optimize search strategies, and inform models of Earth-like planets, where purple is the new green.
title Purple is the new green: biopigments and spectra of Earth-like purple worlds
topic Earth and Planetary Astrophysics
url https://arxiv.org/abs/2404.10105