NASA's Juno spacecraft has been orbiting Jupiter since August 2016, providing unprecedented insights into the giant planet's atmosphere. The Jupiter InfraredAuroral Mapper (JIRAM) experiment on board Juno has made spectroscopic observations of the trihydrogen cation (H3+) emissions in both northern and southernauroral regions (Dinelli et al., 2017; Adriani et al., 2017; Mura et al., 2017) and at mid-to-low latitudes (this paper). Observations targeting the limb of the planetfrom 60° North to 60° South latitudes were acquired with JIRAM's spectrometer in August 2016 and March 2017. We use these observations to characterize, for thefirst time, the vertical distribution of the H3+ emissions as a function of latitude across Jupiter's dayside. H3+ emission features in the 3-4 ?m spectral band were usedto retrieve the H3+ volume mixing ratio (VMR) and atmospheric temperatures as a function of altitude. The H3+ density profile has a quasi-symmetric distributionwith latitude, decreasing from 5×10^4 cm-3 at 300 km to 2×10^3 cm-3 at 650 km altitude above the 1-bar level (column densities of 3.5×10^12 cm-2 to1.4×10^11 cm-2, assuming a 700 km column depth). The H3+ VMR is higher in the Southern hemisphere than in the North with values at 500 km of~4×10-4 ppmv at 40°N and ~8×10-4 ppmv at 40°S. Retrieved temperatures increase almost monotonically with increasing altitude, hovering around 400 K at300 km and>900 K at about 700 km.

H3 + characteristics in the Jupiter atmosphere as observed at limb with Juno/JIRAM

B. M. Dinelli;M. L. Moriconi;
2019

Abstract

NASA's Juno spacecraft has been orbiting Jupiter since August 2016, providing unprecedented insights into the giant planet's atmosphere. The Jupiter InfraredAuroral Mapper (JIRAM) experiment on board Juno has made spectroscopic observations of the trihydrogen cation (H3+) emissions in both northern and southernauroral regions (Dinelli et al., 2017; Adriani et al., 2017; Mura et al., 2017) and at mid-to-low latitudes (this paper). Observations targeting the limb of the planetfrom 60° North to 60° South latitudes were acquired with JIRAM's spectrometer in August 2016 and March 2017. We use these observations to characterize, for thefirst time, the vertical distribution of the H3+ emissions as a function of latitude across Jupiter's dayside. H3+ emission features in the 3-4 ?m spectral band were usedto retrieve the H3+ volume mixing ratio (VMR) and atmospheric temperatures as a function of altitude. The H3+ density profile has a quasi-symmetric distributionwith latitude, decreasing from 5×10^4 cm-3 at 300 km to 2×10^3 cm-3 at 650 km altitude above the 1-bar level (column densities of 3.5×10^12 cm-2 to1.4×10^11 cm-2, assuming a 700 km column depth). The H3+ VMR is higher in the Southern hemisphere than in the North with values at 500 km of~4×10-4 ppmv at 40°N and ~8×10-4 ppmv at 40°S. Retrieved temperatures increase almost monotonically with increasing altitude, hovering around 400 K at300 km and>900 K at about 700 km.
2019
Istituto di Scienze dell'Atmosfera e del Clima - ISAC
Istituto di Scienze dell'Atmosfera e del Clima - ISAC - Sede Secondaria Roma
Jupiter's atmosphere
spectroscopy
Juno/JIRAM mission
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Descrizione: H3 + characteristics in the Jupiter atmosphere as observed at limb with Juno/JIRAM
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/390224
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