The distribution, composition, and particle properties of Mars mesospheric aerosols: An analysis of CRISM visible/near-IR limb spectra with context from near-coincident MCS and MARCI observations

被引:50
作者
Clancy, R. Todd [1 ]
Wolff, Michael J. [1 ]
Smith, Michael D. [2 ]
Kleinbohl, Armin [3 ]
Cantor, Bruce A. [4 ]
Murchie, Scott L. [5 ]
Toigo, Anthony D. [5 ]
Seelos, Kim [5 ]
Lefevre, Franck [6 ]
Montmessin, Franck [6 ]
Daerden, Frank [7 ]
Sandor, Brad J. [1 ]
机构
[1] Space Sci Inst, 4750 Walnut St,Suite 205, Boulder, CO 80301 USA
[2] NASA, Goddard Space Flight Ctr, Greenbelt, MD 20771 USA
[3] CALTECH, Jet Prop Lab, 4800 Oak Grove Dr, Pasadena, CA 91109 USA
[4] Malin Space Sci Syst, 5880 Pacific Ctr Blvd, San Diego, CA 92121 USA
[5] Johns Hopkins Univ, Appl Phys Lab, Johns Hopkins Rd, Laurel, MD 20723 USA
[6] Lab Atmospheres Milieux Observat Spatiales, Paris, France
[7] Royal Belgian Inst Space Aeron BIRA IASB, Brussels, Belgium
关键词
CO2 ICE CLOUDS; BIMODAL SIZE DISTRIBUTION; DETACHED DUST LAYERS; MARTIAN ATMOSPHERE; RADIATIVE-TRANSFER; MGS TES; MU-M; SCATTERING; IRIDESCENCE; VARIABILITY;
D O I
10.1016/j.icarus.2019.03.025
中图分类号
P1 [天文学];
学科分类号
0704 ;
摘要
The Compact Reconnaissance Imaging Spectral Mapper (CRISM) onboard the Mars Reconnaissance Orbiter (MRO) obtains pole-to-pole observations (i.e., full MRO orbits) of vertical profiles for visible/near-IR spectra (lambda = 0.4-4.0 mu m), which are ideally suited to identifying the composition and particle sizes of Mars ice and dust aerosols over 50-100 km altitudes in the Mars mesosphere. Within the coverage limitations of the CRISM limb data set, a distinct compositional dichotomy is found in Mars mesospheric ice aerosols. CO2 ice clouds appear during the aphelion period of Mars orbit (Solar Longitudes, L-s similar to 0-160 degrees) at low latitudes (similar to 20S-10N) over specific longitude regions (Meridiani, Valles Marineris) and at typical altitudes of 55-75 km. Apart from faint water ice hazes below 55 km, mesospheric H2O ice clouds are primarily restricted to the perihelion orbital range (L-s similar to 160 - 350 degrees) at northern and southern mid-to-low latitudes with less apparent longitudinal dependences. Mars mesospheric CO2 clouds are presented in CRISM spectra with a surprisingly large range of particle sizes (cross section weighted radii, R-eff = 0.3 to 2.2 mu m). The smaller particle sizes (R-eff <= 1 mu m) appear concentrated near the spatial (latitude and altitude) boundaries of their global occurrences. CRISM spectra of mesospheric CO2 clouds also show evidence of iridescence, indicating very narrow particle size distributions (effective variance, V-eff similar to 0.03) and so very abrupt CO2 cloud nucleation. Furthermore, these clouds are sometimes accompanied by altitude coincident peaks in 1.27 mu m O-2 dayglow, which indicates very dry, cold regions of formation. Mesospheric water ice clouds generally exhibit small particle sizes (R-eff = 0.1-0.3 mu m), although larger particle sizes (R-eff = 0.4-0.7 mu m) appear infrequently. On average, water ice cloud particle sizes decrease with altitude over 50-80 km in the perihelion mesosphere. Water ice mass appears similar in clouds over a large range of observed cloud particle sizes, with particle number densities increasing to similar to 10 cm(-3) for R-eff = 0.2 mu m. Near coincident Mars Climate Sounder (MCS) temperature and aerosol profile measurements for a subset of CRISM mesospheric aerosol measurements indicate near saturation (H2O and CO2) conditions for ice clouds and distinct mesospheric temperature increases associated with mesospheric dust loading. Dayside (3 pm) mesospheric CO2 clouds with larger particle sizes (R-eff >= 0.5 mu m) scatter surface infrared emission in MCS limb infrared radiances, as well as solar irradiance in the MCS solar band channel. Scattering of surface infrared emission is most strikingly presented in nighttime (3 am) MCS observations at 55-60 km altitudes, indicating extensive mesospheric nighttime CO2 clouds with considerably larger particle sizes (R-eff similar to 7 mu m). Mesospheric CO2 ice clouds present cirrus-like waveforms over extensive latitude and longitude regions (10 degrees x 10 degrees), as revealed in coincident Mars Color Imager (MARCI) nadir imaging. Solar tides, gravity waves, and the large orbital variation of the extended thermal structure of the Mars atmosphere influence all of these behaviors. Mesospheric dust aerosols appear infrequently over the non-global (planet encircling) dust storm era of the CRISM limb data set (2009-2016), and exhibit smaller particle sizes (R-eff = 0.2-0.7 mu m) relative to dust in the lower atmosphere. One isolated case of an aphelion (L-s = 96 degrees) mesospheric dust layer with large dust particle sizes (R-eff similar to 2 mu m) over Syria Planum may reflect high altitude, non-local transport of dust over elevated regions.
引用
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页码:246 / 273
页数:28
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