Excitation Properties of Photopigments and Their Possible Dependence on the Host Star
arXiv:2306.03546 · doi:10.3847/2041-8213/ac3478
Abstract
Photosynthesis is a plausible pathway for the sustenance of a substantial biosphere on an exoplanet. In fact, it is also anticipated to create distinctive biosignatures detectable by next-generation telescopes. In this work, we explore the excitation features of photopigments that harvest electromagnetic radiation by constructing a simple quantum-mechanical model. Our analysis suggests that the primary Earth-based photopigments for photosynthesis may not function efficiently at wavelengths m. In the context of (hypothetical) extrasolar photopigments, we calculate the potential number of conjugated -electrons () in the relevant molecules, which can participate in the absorption of photons. By hypothesizing that the absorption maxima of photopigments are close to the peak spectral photon flux of the host star, we utilize the model to estimate . As per our formalism, is modulated by the stellar temperature, and is conceivably higher (lower) for planets orbiting stars cooler (hotter) than the sun; exoplanets around late-type M-dwarfs might require an twice that of the Earth. We conclude the analysis with a brief exposition of how our model could be empirically tested by future observations.
9 pages, 2 figures. Published 2021 November 11 in ApJ Letters
References in corpus (12)
- Growth Model Interpretation of Planet Size Distribution
- Vegetation's Red Edge: A Possible Spectroscopic Biosignature of Extraterrestrial Plants
- Spectral signatures of photosynthesis I: Review of Earth organisms
- Spectral signatures of photosynthesis II: coevolution with other stars and the atmosphere on extrasolar worlds
- Irradiated ocean planets bridge super-Earth and sub-Neptune populations
- Photosynthesis on habitable planets around low-mass stars
- Red-edge position of habitable exoplanets around M-dwarfs
- Efficiency of the oxygenic photosynthesis on Earth-like planets in the habitable zone
- The peak absorbance wavelength of photosynthetic pigments around other stars from spectral optimization
- Expanding the Timeline for Earth's Photosynthetic Red Edge Biosignature
- Constraints on Aquatic Photosynthesis for Terrestrial Planets Around Other Stars
- Characteristics of aquatic biospheres on temperate planets around Sun-like stars and M-dwarfs
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- Information Transmission via Molecular Communication in Astrobiological Environments
- Photosynthetic exergy I. Thermodynamic limits for habitable-zone planets