peer reviewedThe Ultraviolet Spectrograph (UVS) instrument on the Juno mission records far-ultraviolet reflected sunlight from Jupiter. These spectra are sensitive to the abundances of chemical species in the upper atmosphere and to the distribution of the stratospheric haze layer. We combine observations from the first 30 perijoves of the mission in order to study the meridional distribution of acetylene (C2H2) in Jupiter's stratosphere. We find that the abundance of C2H2 decreases toward the poles by a factor of 2-4, in agreement with previous analyses of mid-infrared spectra. This result is expected from insolation rates: near the equator, the UV solar flux is higher, allowing more C2H2 to be generated from the UV photolysis of CH4. The ...
We present an analysis of IRTF-TEXES spectra of Jupiter's mid-to-high latitudes in order to test the...
The observed ratio of C_2H_6 to C_2H_2 in the Jovian stratosphere increases from ∼55 at 2 mbar to ∼2...
New results (Grassi et al., 2020, https://doi.org/10.1029/2019JE006206) from analysis of Juno Jovian...
The Ultraviolet Spectrograph (UVS) instrument on the Juno mission records far-ultraviolet reflected ...
The Ultraviolet Spectrograph (UVS) instrument on the Juno mission records far-ultraviolet reflected ...
Hydrocarbons such as acetylene (C2H2) and ethane (C2H6) are important tracers in Jupiter's atmospher...
International audienceHydrocarbons such as acetylene (C 2H 2) and ethane (C 2H 6) are important trac...
We present an analysis of Voyager-1-IRIS and Cassini-CIRS spectra of Jupiter's high latitudes acquir...
Acetylene (C2H2) and ethane (C2H6) are both produced in the stratosphere of Jupiter via photolysis o...
At wavelengths between 0.15 and 0.19 μm, the far-ultraviolet spectrum of Jupiter is dominated by the...
The Juno mission offers the opportunity to study Jupiter, from its inner structure, up to its magnet...
Auroral processes are evident in Jupiter's polar atmosphere over a large range in wavelength (X-ray ...
Jupiter exhibits auroral emission over a large range of wavelengths. Auroral emission at X-ray, ult...
The flybys of Jupiter by the Voyager spacecraft in 1979, and over two decades later by Cassini in 20...
Jupiter’s obliquity and eccentricity drive the seasonal forcing on its atmosphere. The seasonal vari...
We present an analysis of IRTF-TEXES spectra of Jupiter's mid-to-high latitudes in order to test the...
The observed ratio of C_2H_6 to C_2H_2 in the Jovian stratosphere increases from ∼55 at 2 mbar to ∼2...
New results (Grassi et al., 2020, https://doi.org/10.1029/2019JE006206) from analysis of Juno Jovian...
The Ultraviolet Spectrograph (UVS) instrument on the Juno mission records far-ultraviolet reflected ...
The Ultraviolet Spectrograph (UVS) instrument on the Juno mission records far-ultraviolet reflected ...
Hydrocarbons such as acetylene (C2H2) and ethane (C2H6) are important tracers in Jupiter's atmospher...
International audienceHydrocarbons such as acetylene (C 2H 2) and ethane (C 2H 6) are important trac...
We present an analysis of Voyager-1-IRIS and Cassini-CIRS spectra of Jupiter's high latitudes acquir...
Acetylene (C2H2) and ethane (C2H6) are both produced in the stratosphere of Jupiter via photolysis o...
At wavelengths between 0.15 and 0.19 μm, the far-ultraviolet spectrum of Jupiter is dominated by the...
The Juno mission offers the opportunity to study Jupiter, from its inner structure, up to its magnet...
Auroral processes are evident in Jupiter's polar atmosphere over a large range in wavelength (X-ray ...
Jupiter exhibits auroral emission over a large range of wavelengths. Auroral emission at X-ray, ult...
The flybys of Jupiter by the Voyager spacecraft in 1979, and over two decades later by Cassini in 20...
Jupiter’s obliquity and eccentricity drive the seasonal forcing on its atmosphere. The seasonal vari...
We present an analysis of IRTF-TEXES spectra of Jupiter's mid-to-high latitudes in order to test the...
The observed ratio of C_2H_6 to C_2H_2 in the Jovian stratosphere increases from ∼55 at 2 mbar to ∼2...
New results (Grassi et al., 2020, https://doi.org/10.1029/2019JE006206) from analysis of Juno Jovian...