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The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions

As of 15 August 2026, this Paper Citation Record lists 99 of 99 outbound references and 0 inbound Pith citation observations for arXiv:2608.13157.

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pith.paper-citation-record.v1
2608.13157 v1

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99 of 99 outbound references displayed

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Outbound references

Observation b7a70ce9-0903-4579-8810-e1e89dadc175 · outbound

This paper cites Giant planet interiors and atmospheres.

The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions Giant planet interiors and atmospheres

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The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions , keywords =

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The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions , keywords =

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This paper cites EPSC-DPS Joint Meeting 2025 , year = 2025, volume =.

The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions EPSC-DPS Joint Meeting 2025 , year = 2025, volume =

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Observation a651617d-afeb-48d3-a443-73dbfde82ee3 · outbound

This paper cites Unraveling the origin of giant exoplanets: Observational implications of convective mixing.

The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions Unraveling the origin of giant exoplanets: Observational implications of convective mixing

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This paper cites Convective Mixing in Gas Giant Planets with Primordial Composition Gradients.

The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions Convective Mixing in Gas Giant Planets with Primordial Composition Gradients

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This paper cites Storms and convection on Uranus and Neptune: impact of methane abundance revealed by a 3D cloud-resolving model.

The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions Storms and convection on Uranus and Neptune: impact of methane abundance revealed by a 3D cloud-resolving model

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The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions , keywords =

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The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions , keywords =

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The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions , keywords =

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This paper cites The Solar System could have formed in a low-viscosity disc: A dynamical study from giant planet migration to the Nice model.

The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions The Solar System could have formed in a low-viscosity disc: A dynamical study from giant planet migration to the Nice model

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The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions ANDES, the high resolution spectrograph for the ELT: science goals, project overview and future developments

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This paper cites A 3D picture of moist-convection inhibition in hydrogen-rich atmospheres: Implications for K2-18 b.

The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions A 3D picture of moist-convection inhibition in hydrogen-rich atmospheres: Implications for K2-18 b

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The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions , keywords =

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The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions Heat-Flux Limited Cloud Activity and Vertical Mixing in Giant Planet Atmospheres with an Application to Uranus and Neptune

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The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions Uranus' Complex Internal Structure

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The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions , keywords =

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The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions FastChem Cond: Equilibrium chemistry with condensation and rainout for cool planetary and stellar environments

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The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions Clouds and Clarity: Revisiting Atmospheric Feature Trends in Neptune-size Exoplanets

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The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions Latitudinal variations in methane abundance, aerosol opacity and aerosol scattering efficiency in Neptune's atmosphere determined from VLT/MUSE

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The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions Doppler wind measurements in Neptune's stratosphere with ALMA

Reference 22

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The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions Remote Sensing , keywords =

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The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions Experimental Astronomy , keywords =

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The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions FastChem 2: An improved computer program to determine the gas-phase chemical equilibrium composition for arbitrary element distributions

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The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions Remote Sensing , keywords =

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The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions Uranus and Neptune are key to understand planets with hydrogen atmospheres

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The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions European Planetary Science Congress , year = 2022, month = sep, eid =

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The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions RISTRETTO: high-resolution spectroscopy at the diffraction limit of the VLT

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The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions Empirical Structure Models of Uranus and Neptune

Reference 30

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The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions Tropospheric Composition and Circulation of Uranus with ALMA and the VLA

Reference 31

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The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions Philosophical Transactions of the Royal Society of London Series A , keywords =

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The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions Philosophical Transactions of the Royal Society of London Series A , keywords =

Reference 33

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The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions The deep composition of Uranus and Neptune from in situ exploration and thermochemical modeling

Reference 34

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The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions Deep Atmosphere Composition, Structure, Origin, and Exploration, with Particular Focus on Critical in situ Science at the Icy Giants

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Observation e38ecfec-b352-44fb-99a8-0551e79eb240 · outbound

This paper cites Ice Giant Circulation Patterns: Implications for Atmospheric Probes.

The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions Ice Giant Circulation Patterns: Implications for Atmospheric Probes

Reference 36

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Observation cc30bdfa-017a-4144-abfd-6c76abb4607c · outbound

This paper cites , keywords =.

The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions , keywords =

Reference 37

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Observation 9c85a357-9467-4e59-9547-2e31b8ecbab8 · outbound

This paper cites Neptune's Latitudinal Variations as Viewed with ALMA.

The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions Neptune's Latitudinal Variations as Viewed with ALMA

Reference 38

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Observation b560b01e-57aa-4def-9ea1-c5ff6686292f · outbound

This paper cites Probable detection of hydrogen sulphide (H$_2$S) in Neptune's atmosphere.

The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions Probable detection of hydrogen sulphide (H$_2$S) in Neptune's atmosphere

Reference 39

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Observation 7885b88b-1498-45bf-b8fd-91eafe22d626 · outbound

This paper cites The methane distribution and polar brightening on Uranus based on HST/STIS, Keck/NIRC2, and IRTF/SpeX observations through 2015.

The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions The methane distribution and polar brightening on Uranus based on HST/STIS, Keck/NIRC2, and IRTF/SpeX observations through 2015

Reference 40

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Observation 1c20640c-9d40-45e6-852a-350f3242eb2d · outbound

This paper cites FastChem: A computer program for efficient complex chemical equilibrium calculations in the neutral/ionized gas phase with applications to stellar and planetary atmospheres.

The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions FastChem: A computer program for efficient complex chemical equilibrium calculations in the neutral/ionized gas phase with applications to stellar and planetary atmospheres

Reference 41

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Observation 376bc88f-c294-4b25-a2fb-ce3f9b205552 · outbound

This paper cites Towards Consistent Modeling of Atmospheric Chemistry and Dynamics in Exoplanets: Validation and Generalization of Chemical Relaxation Method.

The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions Towards Consistent Modeling of Atmospheric Chemistry and Dynamics in Exoplanets: Validation and Generalization of Chemical Relaxation Method

Reference 42

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Observation 827bffe1-39aa-463f-a99a-d413b43d1489 · outbound

This paper cites Scientific rationale for Uranus and Neptune in situ explorations.

The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions Scientific rationale for Uranus and Neptune in situ explorations

Reference 43

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Observation 2edc0225-6e03-4264-985e-1b05fa41bc9b · outbound

This paper cites Nature Astronomy , year = 2018, month = apr, volume =.

The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions Nature Astronomy , year = 2018, month = apr, volume =

Reference 44

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Observation 70e51436-742e-429b-93a1-a065f87e4d04 · outbound

This paper cites Moist adiabats with multiple condensing species: A new theory with application to giant planet atmospheres.

The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions Moist adiabats with multiple condensing species: A new theory with application to giant planet atmospheres

Reference 45

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Observation c97b59e9-1131-41bd-9672-ca8aef2f5d5a · outbound

This paper cites Condensation-inhibited convection in hydrogen-rich atmospheres: Stability against double-diffusive processes and thermal profiles for Jupiter, Saturn, Uranus, and Neptune.

The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions Condensation-inhibited convection in hydrogen-rich atmospheres: Stability against double-diffusive processes and thermal profiles for Jupiter, Saturn, Uranus, and Neptune

Reference 46

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Observation cb74f8a0-8bc0-4cb8-9f55-d7593e5713ef · outbound

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The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions , keywords =

Reference 47

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Observation 0e2f80ef-b53e-48f5-bd7d-a9edeb092157 · outbound

This paper cites High S/N Keck and Gemini AO imaging of Uranus during 2012-2014: New cloud patterns, increasing activity, and improved wind measurements.

The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions High S/N Keck and Gemini AO imaging of Uranus during 2012-2014: New cloud patterns, increasing activity, and improved wind measurements

Reference 48

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Observation 2c4c5820-db97-41cd-8f1e-1cfabe89792b · outbound

This paper cites , keywords =.

The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions , keywords =

Reference 49

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Observation 2a43c95e-5aea-47ec-9d9a-d6e77d820001 · outbound

This paper cites The measured compositions of Uranus and Neptune from their formation on the CO iceline.

The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions The measured compositions of Uranus and Neptune from their formation on the CO iceline

Reference 50

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Observation de64ab80-688b-4f29-8e24-a3dc4158042a · outbound

This paper cites Methane depletion in both polar regions of Uranus inferred from HST/STIS and Keck/NIRC2 observations.

The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions Methane depletion in both polar regions of Uranus inferred from HST/STIS and Keck/NIRC2 observations

Reference 51

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Observation 3262f8c7-1c90-4a39-9da9-e3a51df9fc58 · outbound

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The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions , year = 2014, month = jul, volume =

Reference 52

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Observation 999f52e9-924d-45aa-abc4-dda10ef24c36 · outbound

This paper cites On the role of the H2 ortho:para ratio in gravitational collapse during star formation.

The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions On the role of the H2 ortho:para ratio in gravitational collapse during star formation

Reference 53

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Observation a47e7f8b-8ca7-415d-b78f-da6613b61cc8 · outbound

This paper cites , year = 2014, month = feb, volume =.

The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions , year = 2014, month = feb, volume =

Reference 54

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Observation 35e1fbbe-5ac8-4661-8df2-00647e7e5e22 · outbound

This paper cites Bulk Composition of GJ 1214b and other sub-Neptune exoplanets.

The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions Bulk Composition of GJ 1214b and other sub-Neptune exoplanets

Reference 55

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Observation cb388718-07a0-4cef-860c-8e373569bcf3 · outbound

This paper cites Post-equinox dynamics and polar cloud structure on Uranus.

The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions Post-equinox dynamics and polar cloud structure on Uranus

Reference 56

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Observation eac38d74-4404-4cd5-a6b3-f5b804d92dd4 · outbound

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The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions , keywords =

Reference 57

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Observation fddec892-7268-47d4-a1d9-8248913173f1 · outbound

This paper cites Disequilibrium Carbon, Oxygen, and Nitrogen Chemistry in the Atmospheres of HD 189733b and HD 209458b.

The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions Disequilibrium Carbon, Oxygen, and Nitrogen Chemistry in the Atmospheres of HD 189733b and HD 209458b

Reference 58

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Observation ac26a3cc-8f26-4800-9865-e87740266148 · outbound

This paper cites Atmospheric Chemistry in Giant Planets, Brown Dwarfs, and Low-Mass Dwarf Stars III. Iron, Magnesium, and Silicon.

The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions Atmospheric Chemistry in Giant Planets, Brown Dwarfs, and Low-Mass Dwarf Stars III. Iron, Magnesium, and Silicon

Reference 59

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Observation 8db32ec6-0c26-41db-9680-bcc5c28c0b11 · outbound

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The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions , keywords =

Reference 60

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Observation d1c6402e-c36d-4f0b-8ee3-fe455291a6bc · outbound

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The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions AAS/Division for Planetary Sciences Meeting Abstracts \#40 , year = 2008, series =

Reference 61

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Observation 0cb5fc0e-7672-49bd-adfc-d9157cd9d89d · outbound

This paper cites Atmospheric Chemistry in Giant Planets, Brown Dwarfs, and Low-Mass Dwarf Stars II. Sulfur and Phosphorus.

The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions Atmospheric Chemistry in Giant Planets, Brown Dwarfs, and Low-Mass Dwarf Stars II. Sulfur and Phosphorus

Reference 62

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The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions , keywords =

Reference 63

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The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions , keywords =

Reference 64

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Observation a5b3c020-29ce-40f5-8bb7-edc33a2bee9f · outbound

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The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions Annual Review of Earth and Planetary Sciences , keywords =

Reference 65

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Observation 180ab5a2-a018-4290-8715-1649f8066254 · outbound

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The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions Unresolved cited work

Reference 66

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Observation 9b9c47c2-b3fd-4bf1-845d-d9aee8ad39d8 · outbound

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The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions , year = 1995, month = nov, volume =

Reference 67

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The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions Science , year = 1995, month = sep, volume =

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Observation 483e51ad-71a0-4b47-ab65-d8c6f4fe317e · outbound

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The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions , keywords =

Reference 69

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The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions , keywords =

Reference 70

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The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions , keywords =

Reference 71

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Observation 256514b2-e6a1-4a25-b40a-c852a8aefd80 · outbound

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The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions Science , keywords =

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The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions , keywords =

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The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions Science , keywords =

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Observation 4e2885c0-8aa6-4a0d-bae5-de7d1454aa07 · outbound

This paper cites Cambridge University Press.

The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions Cambridge University Press

Reference 75

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Observation f47d2d2a-b497-4c74-8cfe-0d8974756aa5 · outbound

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The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions , keywords =

Reference 76

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Observation ccacc05d-ca1c-4cb9-a2d3-857677e7dda8 · outbound

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The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions , year = 1973, month = dec, volume =

Reference 77

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Observation aa994ace-dfbc-4e81-925b-6c8ce9206d29 · outbound

This paper cites , year = 1958, month = may, volume =.

The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions , year = 1958, month = may, volume =

Reference 78

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Observation 01478127-bc7f-46eb-ac7c-9418a0b4c0ce · outbound

This paper cites , year = 1947, month = feb, volume =.

The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions , year = 1947, month = feb, volume =

Reference 79

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Observation 907dc147-432c-4676-bfa6-ed8287a152f8 · outbound

This paper cites , year = 1946, month = sep, volume =.

The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions , year = 1946, month = sep, volume =

Reference 80

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correction dated 2005-01-05. Source: crossref record 10.1063/1.1724084->10.1063/1.1724195:correction, observed 2026-07-11T02:55:53.249678+00:00. This notice travels one citation hop only.

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Observation 5b54fb5b-781a-4396-9f3d-234f84fa5617 · outbound

This paper cites Hazy blue worlds: A holistic aerosol model for Uranus and Neptune, including Dark Spots.

The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions Hazy blue worlds: A holistic aerosol model for Uranus and Neptune, including Dark Spots

Reference 81

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Observation 395216d0-2600-48bc-b524-edac92d52d2a · outbound

This paper cites FastChem 4: New chemical elements and improved convergence behaviour.

The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions FastChem 4: New chemical elements and improved convergence behaviour

Reference 82

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Observation ec3fa4b8-f046-4c69-a710-2314c81ce2ce · outbound

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The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions , keywords =

Reference 83

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Observation 0b9b3aa7-69a5-4038-9e8a-475514b861e6 · outbound

This paper cites Origins, Worlds, and Life: A Decadal Strategy for Planetary Science and Astrobiology 2023-2032.

The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions Origins, Worlds, and Life: A Decadal Strategy for Planetary Science and Astrobiology 2023-2032

Reference 84

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Observation 6b7c8262-7f83-46fb-a517-647748ff5a63 · outbound

This paper cites Detection of stratospheric HCN and tropospheric CO in Uranus and the implication for their sources.

The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions Detection of stratospheric HCN and tropospheric CO in Uranus and the implication for their sources

Reference 85

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Observation 35765bfb-cc22-4333-b4d7-c49a5f4c7cd9 · outbound

This paper cites Philosophical Transactions of the Royal Society of London Series A , keywords =.

The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions Philosophical Transactions of the Royal Society of London Series A , keywords =

Reference 86

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Observation 43911a10-4e94-4fba-b901-dfaa766ba9b4 · outbound

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The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions , keywords =

Reference 87

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Observation 863e6bb5-cf38-4bdb-839d-005f3c8c3e37 · outbound

This paper cites , keywords =.

The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions , keywords =

Reference 88

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Observation 5c0bb414-920d-4cdf-a214-fccc20d4aad0 · outbound

This paper cites Jupiter's Temperature Structure: A Reassessment of the Voyager Radio Occultation Measurements.

The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions Jupiter's Temperature Structure: A Reassessment of the Voyager Radio Occultation Measurements

Reference 89

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Observation 281279e3-50a5-466c-a21d-19ba154e170a · outbound

This paper cites Juno Microwave Radiometer Observations Reveal A Warmer Polar Atmosphere on Jupiter.

The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions Juno Microwave Radiometer Observations Reveal A Warmer Polar Atmosphere on Jupiter

Reference 90

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Observation c4438a21-a2fb-40b0-aff0-424b39aacb01 · outbound

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The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions , keywords =

Reference 91

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Observation 317d32df-cd0d-4640-bfe8-03468ce394bd · outbound

This paper cites On the Cool Side: Modeling the Atmospheres of Brown Dwarfs and Giant Planets.

The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions On the Cool Side: Modeling the Atmospheres of Brown Dwarfs and Giant Planets

Reference 92

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Observation d6fa0e2c-c865-4581-aba0-3b4c0f62aa0e · outbound

This paper cites Journal of the Atmospheric Sciences , keywords =.

The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions Journal of the Atmospheric Sciences , keywords =

Reference 93

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Observation 7f1ca562-43cf-40a9-bd1c-15595884c027 · outbound

This paper cites Philosophical Transactions of the Royal Society of London Series A , year = 2013, month = jun, volume =.

The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions Philosophical Transactions of the Royal Society of London Series A , year = 2013, month = jun, volume =

Reference 94

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Observation e0f1e73e-18ff-41a7-86f9-b7f914b70241 · outbound

This paper cites Precipitating Condensation Clouds in Substellar Atmospheres.

The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions Precipitating Condensation Clouds in Substellar Atmospheres

Reference 95

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Observation 864dfe41-ba46-47a5-8f06-d0e4435c7c3c · outbound

This paper cites , keywords =.

The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions , keywords =

Reference 96

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Source-reported events for the cited work

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Observation d2adc056-a276-47ab-b52c-a7b953b8a258 · outbound

This paper cites EPSC-DPS Joint Meeting 2025 , year = 2025, volume =.

The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions EPSC-DPS Joint Meeting 2025 , year = 2025, volume =

Reference 97

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No event found in the named queried sources as of 2026-08-15T06:32:42.880941+00:00.

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Observation 2a21851a-6a77-43f8-be04-b7a2fd887bb1 · outbound

This paper cites EPSC-DPS Joint Meeting 2025 , year = 2025, volume =.

The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions EPSC-DPS Joint Meeting 2025 , year = 2025, volume =

Reference 98

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Observation 5540237a-4f9f-4db9-b36d-335ff4fc8877 · outbound

This paper cites Neptune's Spatial Brightness Temperature Variations from the VLA and ALMA.

The atmospheric vertical structure of Uranus and Neptune from thermochemical models: the impact of model assumptions Neptune's Spatial Brightness Temperature Variations from the VLA and ALMA

Reference 99

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local_arxiv, observed 2026-08-15T15:37:36.346235Z

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No event found in the named queried sources as of 2026-08-15T06:32:42.880941+00:00.

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Pith citing papers

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