A Statistical Method for Constraining the Capability of the Habitable Worlds Observatory to Understand Ozone Onset Time in Earth Analogs

Fuente: arXiv
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Autori principali: Blunt, Sarah, Nielsen, Eric L., Newton, Elisabeth R., Christiansen, Jessie, Daylan, Tansu, Dressing, Courtney, Harada, Caleb K., Kane, Stephen R., Rice, Malena, Martínez, Romy Rodríguez, Sagynbayeva, Sabina
Natura: Preprint
Pubblicazione: 2025
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author Blunt, Sarah
Nielsen, Eric L.
Newton, Elisabeth R.
Christiansen, Jessie
Daylan, Tansu
Dressing, Courtney
Harada, Caleb K.
Kane, Stephen R.
Rice, Malena
Martínez, Romy Rodríguez
Sagynbayeva, Sabina
author_facet Blunt, Sarah
Nielsen, Eric L.
Newton, Elisabeth R.
Christiansen, Jessie
Daylan, Tansu
Dressing, Courtney
Harada, Caleb K.
Kane, Stephen R.
Rice, Malena
Martínez, Romy Rodríguez
Sagynbayeva, Sabina
contents The oxygenation of Earth's atmosphere 2.3 billion years ago, which on exoplanets is expected to be most detectable via the UV ozone feature at $\sim$0.25 $μ$m, is often regarded as a sign of the emergence of photosynthetic life. On exoplanets, we may similarly expect life to oxygenate the atmosphere, but with a characteristic distribution of emergence times. In this paper, we test our ability to recover various "true" emergence time distributions as a function of 1) stellar age uncertainty and 2) number of Earth analogs in the sample. The absolute uncertainties that we recover, for diverse underlying distributions, are mostly independent of the true underlying distribution parameters, and are more dependent on sample size than stellar age uncertainty. For a sample size of 30 Earth analogs, and an HWO architecture sensitive to ozone at 1% of the current atmospheric level on Earth, we find that no ozone detections across the entire sample would place a 10$σ$ limit on the mean time of ozone emergence, regardless of stellar age uncertainty.
format Preprint
id arxiv_https___arxiv_org_abs_2507_06188
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle A Statistical Method for Constraining the Capability of the Habitable Worlds Observatory to Understand Ozone Onset Time in Earth Analogs
Blunt, Sarah
Nielsen, Eric L.
Newton, Elisabeth R.
Christiansen, Jessie
Daylan, Tansu
Dressing, Courtney
Harada, Caleb K.
Kane, Stephen R.
Rice, Malena
Martínez, Romy Rodríguez
Sagynbayeva, Sabina
Earth and Planetary Astrophysics
Instrumentation and Methods for Astrophysics
The oxygenation of Earth's atmosphere 2.3 billion years ago, which on exoplanets is expected to be most detectable via the UV ozone feature at $\sim$0.25 $μ$m, is often regarded as a sign of the emergence of photosynthetic life. On exoplanets, we may similarly expect life to oxygenate the atmosphere, but with a characteristic distribution of emergence times. In this paper, we test our ability to recover various "true" emergence time distributions as a function of 1) stellar age uncertainty and 2) number of Earth analogs in the sample. The absolute uncertainties that we recover, for diverse underlying distributions, are mostly independent of the true underlying distribution parameters, and are more dependent on sample size than stellar age uncertainty. For a sample size of 30 Earth analogs, and an HWO architecture sensitive to ozone at 1% of the current atmospheric level on Earth, we find that no ozone detections across the entire sample would place a 10$σ$ limit on the mean time of ozone emergence, regardless of stellar age uncertainty.
title A Statistical Method for Constraining the Capability of the Habitable Worlds Observatory to Understand Ozone Onset Time in Earth Analogs
topic Earth and Planetary Astrophysics
Instrumentation and Methods for Astrophysics
url https://arxiv.org/abs/2507.06188