Out on a Limb: The Signatures of East-West Asymmetries in Transmission Spectra from General Circulation Models

Fuente: arXiv
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Main Authors: Arnold, Kenneth E., Savel, Arjun B., Kempton, Eliza M. -R., Roman, Michael T., Rauscher, Emily, Malsky, Isaac, Beltz, Hayley, Steinrueck, Maria E.
Format: Preprint
Published: 2025
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author Arnold, Kenneth E.
Savel, Arjun B.
Kempton, Eliza M. -R.
Roman, Michael T.
Rauscher, Emily
Malsky, Isaac
Beltz, Hayley
Steinrueck, Maria E.
author_facet Arnold, Kenneth E.
Savel, Arjun B.
Kempton, Eliza M. -R.
Roman, Michael T.
Rauscher, Emily
Malsky, Isaac
Beltz, Hayley
Steinrueck, Maria E.
contents In the era of JWST, observations of hot Jupiter atmospheres are becoming increasingly precise. As a result, the signature of limb asymmetries due to temperature or abundance differences and the presence of aerosols can now be directly measured using transmission spectroscopy. Using a grid of general circulation models (GCMs) with varying irradiation temperature (1500 K - 4000 K) and prescriptions of cloud formation, we simulate 3D ingress/egress and morning/evening-limb transmission spectra. We aim to assess the impact that clouds, 3D temperature structure, and non-uniform distribution of gases have on the observed spectra, and how these inhomogeneities can be identified. A second goal is to assess the relative merits of two separate methods (ingress/egress v.s. morning/evening-limb spectroscopy) for isolating atmospheric asymmetries. From our models, it is evident that an east-west temperature difference is the leading order effect for producing ingress/egress or morning/evening-limb spectral differences. We additionally find that clouds contribute strongly to the observed limb asymmetry at moderate irradiation temperatures in our grid ($\sim 2000 \mathrm{K} < T_{\mathrm{irr}} < 3500 \mathrm{K}). At lower temperatures clouds equally dominate the optical depth on both limbs, while at higher temperatures the entire terminator region remains cloud-free. We develop limb asymmetry metrics that can be used to assess the degree of east-west asymmetry for a given planet and predict trends in these metrics with respect to irradiation temperature that are indicative of various physical processes. Our results are useful for predicting and diagnosing the signatures of limb asymmetries in JWST spectra.
format Preprint
id arxiv_https___arxiv_org_abs_2504_14060
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Out on a Limb: The Signatures of East-West Asymmetries in Transmission Spectra from General Circulation Models
Arnold, Kenneth E.
Savel, Arjun B.
Kempton, Eliza M. -R.
Roman, Michael T.
Rauscher, Emily
Malsky, Isaac
Beltz, Hayley
Steinrueck, Maria E.
Earth and Planetary Astrophysics
In the era of JWST, observations of hot Jupiter atmospheres are becoming increasingly precise. As a result, the signature of limb asymmetries due to temperature or abundance differences and the presence of aerosols can now be directly measured using transmission spectroscopy. Using a grid of general circulation models (GCMs) with varying irradiation temperature (1500 K - 4000 K) and prescriptions of cloud formation, we simulate 3D ingress/egress and morning/evening-limb transmission spectra. We aim to assess the impact that clouds, 3D temperature structure, and non-uniform distribution of gases have on the observed spectra, and how these inhomogeneities can be identified. A second goal is to assess the relative merits of two separate methods (ingress/egress v.s. morning/evening-limb spectroscopy) for isolating atmospheric asymmetries. From our models, it is evident that an east-west temperature difference is the leading order effect for producing ingress/egress or morning/evening-limb spectral differences. We additionally find that clouds contribute strongly to the observed limb asymmetry at moderate irradiation temperatures in our grid ($\sim 2000 \mathrm{K} < T_{\mathrm{irr}} < 3500 \mathrm{K}). At lower temperatures clouds equally dominate the optical depth on both limbs, while at higher temperatures the entire terminator region remains cloud-free. We develop limb asymmetry metrics that can be used to assess the degree of east-west asymmetry for a given planet and predict trends in these metrics with respect to irradiation temperature that are indicative of various physical processes. Our results are useful for predicting and diagnosing the signatures of limb asymmetries in JWST spectra.
title Out on a Limb: The Signatures of East-West Asymmetries in Transmission Spectra from General Circulation Models
topic Earth and Planetary Astrophysics
url https://arxiv.org/abs/2504.14060