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The upper haze (UH) of Venus is variable on the order of days and it is populated by two particle modes. We use a 1D microphysics and vertical transport model based on the Community Aerosol and Radiation Model for Atmospheres to evaluate…

Earth and Planetary Astrophysics · Physics 2015-06-18 Peter Gao , Xi Zhang , David Crisp , Charles G. Bardeen , Yuk L. Yung

The presence of phosphine (PH$_3$) in the atmosphere of Venus was reported by Greaves et al. (2021a), based on observations of the J=1-0 transition at 267 GHz using ground-based, millimeter-wave spectroscopy. This unexpected discovery…

The current Venus climate is largely regulated by globally-covered concentrated sulfuric acid clouds from binary condensation of sulfuric acid (H2SO4) and water (H2O). To understand this complicated H2SO4-H2O gas-cloud system, previous…

Earth and Planetary Astrophysics · Physics 2022-07-22 Longkang Dai , Xi Zhang , Wencheng D. Shao , Carver J. Bierson , Jun Cui

Despite surface liquid water's importance to habitability, observationally diagnosing its presence or absence on exoplanets is still an open problem. Inspired within the Solar System by the differing sulfur cycles on Venus and Earth, we…

Earth and Planetary Astrophysics · Physics 2019-12-30 Kaitlyn Loftus , Robin D. Wordsworth , Caroline V. Morley

Measurements of trace-gases in planetary atmospheres help us explore chemical conditions different to those on Earth. Our nearest neighbor, Venus, has cloud decks that are temperate but hyper-acidic. We report the apparent presence of…

An improved high-resolution ground-to-thermosphere version of the Institut Pierre-Simon Laplace (IPSL) Venus General Circulation Model (VGCM), including non-orographic gravity waves (GW) parameterization and fine-tuned non-LTE parameters,…

Venus shares many similarities with the Earth, but concomitantly, some of its features are extremely original. This is especially true for its atmosphere, where high pressures and temperatures are found at the ground level. In these…

Earth and Planetary Astrophysics · Physics 2019-08-22 Daniel Cordier , David A. Bonhommeau , Sara Port , Vincent Chevrier , Sebastien Lebonnois , Fernando Garcia-Sanchez

A defining characteristic of the planet Venus is its thick, CO2-dominated atmosphere. Despite over fifty years of robotic exploration, including thirteen successful atmosphere probes and landers, our knowledge of N2, the…

Earth and Planetary Astrophysics · Physics 2019-11-15 Patrick N. Peplowski , David J. Lawrence , Jack T. Wilson

We report new constraints on the vertical distribution of sulfuric acid vapor in the Venusian atmosphere, derived from a refined analysis of radio occultation (RO) data. The method estimates the power spectral density (PSD) of the received…

Earth and Planetary Astrophysics · Physics 2026-01-14 S. Banerjee , R. K. Choudhary , K. R. Tripathi , T. Imamura , H. Ando

Searches for phosphine in Venus' atmosphere have sparked a debate. Cordiner et al. 2022 analyse spectra from the Stratospheric Observatory For Infrared Astronomy (SOFIA) and infer <0.8 ppb of PH3. We noticed that some spectral artefacts…

Earth and Planetary Astrophysics · Physics 2023-12-13 Jane S. Greaves , Janusz J. Petkowski , Anita M. S. Richards , Clara Sousa-Silva , Sara Seager , David L. Clements

Sulfur-water chemistry plays an important role in the middle atmosphere of Venus. Ground based observations have found that simultaneously observed SO2 and H2O at ~64 km vary with time and are temporally anti-correlated. To understand these…

Earth and Planetary Astrophysics · Physics 2020-09-02 Wencheng D. Shao , Xi Zhang , Carver J. Bierson , Therese Encrenaz

The detection of phosphine in the atmosphere of Venus at an abundance of $\sim 20$ ppb suggests that this gas is being generated by either indeterminate abiotic pathways or biological processes. We consider the latter possibility, and…

Earth and Planetary Astrophysics · Physics 2020-09-30 Manasvi Lingam , Abraham Loeb

One of the most intriguing, long-standing questions regarding Venus' atmosphere is the origin and distribution of the unknown UV-absorber, responsible for the absorption band detected at the near-UV and blue range of Venus' spectrum. In…

Earth and Planetary Astrophysics · Physics 2018-03-14 S. Perez-Hoyos , A. Sanchez-Lavega , A. Garcıa-Munoz , P. G. J. Irwin , J. Peralta , G. Holsclaw , W. M. McClintock , J. F. Sanz-Requena

Following the announcement of the detection of phosphine (PH$_3$) in the cloud deck of Venus at millimeter wavelengths, we have searched for other possible signatures of this molecule in the infrared range. Since 2012, we have been…

Earth and Planetary Astrophysics · Physics 2020-11-04 T. Encrenaz , T. K. Greathouse , E. Marcq , T. Widemann , B. Bézard , T. Fouchet , R. Giles , H. Sagawa , J. Greaves , C. Sousa-Silva

Thermal radiation becomes a prominent feature in the continuum spectrum of Venus longwards of $\sim$3 $\mu$m. The emission is traceable to the upper cloud and haze layers in the planet's mesosphere. Venus' thermal radiation spectrum is…

Earth and Planetary Astrophysics · Physics 2024-02-07 A. García Muñoz , P. Wolkenberg , A. Sánchez-Lavega , R. Hueso , I. Garate-Lopez

The detection of phosphine (PH3) in the atmosphere of Venus has been recently reported based on millimeter-wave radio observations (Greaves et al. 2020), and its re-analyses (Greaves et al. 2021a/b). In this Matters Arising we perform an…

Venus is known for its extreme surface temperature and its sulfuric acid clouds. But the cloud layers on Venus have similar temperature and pressure conditions to those on the surface of Earth and are conjectured to be a possible habitat…

New analysis is presented of the 1.1 mm wavelength absorption lines in Venus' atmosphere that suggested the presence of phosphine. We retrieve a sulphur dioxide observation from the JCMT archive that was simultaneous within a few days of…

The recent candidate detection of ~1 ppb of phosphine in the middle atmosphere of Venus is so unexpected that it requires an exhaustive search for explanations of its origin. Phosphorus-containing species have not been modelled for Venus'…

The depletion of SO$_2$ and H$_2$O in and above the clouds of Venus (45 -- 65 km) cannot be explained by known gas-phase chemistry and the observed composition of the atmosphere. We apply a full-atmosphere model of Venus to investigate…

Earth and Planetary Astrophysics · Physics 2021-04-26 Paul B. Rimmer , Sean Jordan , Tereza Constantinou , Peter Woitke , Oliver Shorttle , Alessia Paschodimas , Richard Hobbs
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