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Related papers: The Venus' Cloud Discontinuity in 2022

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Firstly identified in images from JAXA's orbiter Akatsuki, the cloud discontinuity of Venus is a planetary-scale phenomenon known to be recurrent since, at least, the 1980s. Interpreted as a new type of Kelvin wave, this disruption is…

Planetary-scale waves are thought to play a role in powering the yet-unexplained atmospheric superrotation of Venus. Puzzlingly, while Kelvin, Rossby and stationary waves manifest at the upper clouds (65--70 km), no planetary-scale waves or…

We report Venus image observations around the two maximum elongations of the planet at June and October 2015. From these images we describe the global atmospheric dynamics and cloud morphology in the planet before the arrival of JAXA…

The Venusian atmosphere is covered by clouds with super-rotating winds whose accelerating mechanism is still not well understood. The fastest winds, occurring at the cloud tops ($\sim$70 km height), have been studied for decades thanks to…

Earth and Planetary Astrophysics · Physics 2019-03-08 J. Peralta , N. Iwagami , Sánchez-Lavega , Y. J. Lee , R. Hueso , M. Narita , T. Imamura , P. Miles , A. Wesley , E. Kardasis , S. Takagi

During the years 2016 to 2018, the instruments Akatsuki/IR2 (JAXA) and IRTF/SpeX (NASA) acquired a large set of images at 1.74, 2.26 and 2.32 {\mu}m to study the nightside mid-to-lower clouds (48-60 km) of Venus. Here we summarize the rich…

At the cloud top level of Venus (65-70 km altitude) the atmosphere rotates 60 times faster than the underlying surface, a phenomenon known as superrotation. Whereas on Venus's dayside the cloud top motions are well determined and Venus…

Earth and Planetary Astrophysics · Physics 2018-02-13 J. Peralta , R. Hueso , A. Sánchez-Lavega , Y. J. Lee , A. García-Muñoz , T. Kouyama , H. Sagawa , T. M. Sato , G. Piccioni , S. Tellmann , T. Imamura , T. Satoh

We present measurements of the wind speeds at the nightside lower clouds of Venus from observations by JAXA's mission Akatsuki during 2016, complemented with new wind measurements from ground-based observations acquired with TNG/NICS in…

We explore the dominant modes of variability in the observed albedo at the cloud tops of Venus using the Akatsuki UVI 283-nm and 365-nm observations, which are sensitive to SO2 and unknown UV absorber distributions respectively, over the…

Earth and Planetary Astrophysics · Physics 2019-06-12 Pushkar Kopparla , Yeon Joo Lee , Takeshi Imamura , Atsushi Yamazaki

The Venusian atmosphere is in a state of superrotation where prevailing westward winds move much faster than the planet's rotation. Venus is covered with thick clouds that extend from about 45 to 70 km altitude, but thermal radiation…

We present the detection and characterisation of mesoscale waves on the lower clouds of Venus using images from the Visible Infrared Thermal Imaging Spectrometer onboard the European Venus Express space mission and from the 2 $\mu$m camera…

Earth and Planetary Astrophysics · Physics 2021-05-19 J. E. Silva , P. Machado , J. Peralta , F. Brasil , S. Lebonnois , M. Lefèvre

The atmosphere of Venus is characterized by strong superrotation, in which the wind velocities at cloud heights are around 60 times faster than the surface rotation rate. The reasons for this strong superrotation are still not well…

Earth and Planetary Astrophysics · Physics 2019-02-05 Helen F. Parish , Jonathan L. Mitchell

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…

Sulfur dioxide is a radiatively and chemically important trace gas in the atmosphere of Venus and its abundance at the cloud-tops has been observed to vary on interannual to decadal timescales. This variability is thought to come from…

Earth and Planetary Astrophysics · Physics 2020-11-02 Pushkar Kopparla , Ashwin Seshadri , Takeshi Imamura , Yeon Joo Lee

The Akatsuki instrument LIR measured an unprecedented wave feature at the top of Venusian cloud layer. Stationary bow-shape waves of thousands of kilometers large lasting several Earth days have been observed over the main equatorial…

Earth and Planetary Astrophysics · Physics 2019-07-31 Maxence Lefèvre , Aymeric Spiga , Sébastien Lebonnois

Venus has regained attention on the international stage with the approval of three new missions by ESA and NASA. As the twin sister of Earth, Venus exhibits a distinct atmosphere, which casts a veil of mystery over the planetary evolution…

Earth and Planetary Astrophysics · Physics 2025-06-09 Longkang Dai , Dmitrij V. Titov , Wencheng D. Shao , Xi Zhang , Jun Cui , Siteng Fan

Venus Express provided a long-term monitoring of Venus atmosphere. Several works focused on the dynamics of the upper cloud visible on the day-side in ultraviolet images sensitive to the 65-70 km altitude and in the lower cloud level (50 km…

Earth and Planetary Astrophysics · Physics 2024-01-31 Ricardo Hueso , Javier Peralta , Itziar Garate-Lopez , Tatyana V. Bandos , Agustin Sanchez-Lavega

The clouds have a great impact on Venus's energy budget and climate evolution, but its three-dimensional structure is still not well understood. Here we incorporate a simple Venus cloud physics scheme into a flexible GCM to investigate the…

Earth and Planetary Astrophysics · Physics 2024-07-24 Wencheng D. Shao , João M. Mendonça , Longkang Dai

Planetary-scale waves at the Venusian cloud-top cause periodic variations in both winds and ultraviolet (UV) brightness. While the wave candidates are the 4-day Kelvin wave and 5-day Rossby wave with zonal wavenumber 1, their temporal…

Venus exhibits strong and changing contrasts at ultraviolet wavelengths apparently related to the clouds and the dynamics in the cloud layer, but to date their origin continues to be unknown. We investigate the nature of the UV contrasts…

Earth and Planetary Astrophysics · Physics 2025-02-10 Maarten Roos-Serote , Colin Wilson , Ryan MacDonald , Silvia Tellmann , Yeon Joo Lee , Igor Khatuntsev

At visible wavelengths, Venus appears serene and pale-yellow, but since the 1920s, observers have noted high-contrast features in the ultraviolet. These features track the about 4-day superrotation of the upper cloud deck and vary widely…

Earth and Planetary Astrophysics · Physics 2026-01-14 Jan Spacek , Yeon J. Lee , Paul B. Rimmer , Janusz J. Petkowski
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