火星探测计划
大气(单位)
火星大气层
火星人
天体生物学
地质学
环境科学
大气科学
地球科学
气象学
地理
物理
作者
D. Banfield,Aymeric Spiga,Claire Newman,F. Forget,M. T. Lemmon,R. D. Lorenz,Naomi Murdoch,Daniel Viúdez‐Moreiras,Jorge Pla‐García,R. García,Philippe Lognonné,Özgür Karatekin,C. Perrin,Léo Martire,N. A. Teanby,Bart Van Hove,J. N. Maki,B. Kenda,Nils Mueller,S. Rodríguez
标识
DOI:10.1038/s41561-020-0534-0
摘要
The atmosphere of Mars is thin, although rich in dust aerosols, and covers a dry surface. As such, Mars provides an opportunity to expand our knowledge of atmospheres beyond that attainable from the atmosphere of the Earth. The InSight (Interior Exploration using Seismic Investigations, Geodesy and Heat Transport) lander is measuring Mars’s atmosphere with unprecedented continuity, accuracy and sampling frequency. Here we show that InSight unveils new atmospheric phenomena at Mars, especially in the higher-frequency range, and extends our understanding of Mars’s meteorology at all scales. InSight is uniquely sensitive to large-scale and regional weather and obtained detailed in situ coverage of a regional dust storm on Mars. Images have enabled high-altitude wind speeds to be measured and revealed airglow—faint emissions produced by photochemical reactions—in the middle atmosphere. InSight observations show a paradox of aeolian science on Mars: despite having the largest recorded Martian vortex activity and dust-devil tracks close to the lander, no visible dust devils have been seen. Meteorological measurements have produced a catalogue of atmospheric gravity waves, which included bores (soliton-like waves). From these measurements, we have discovered Martian infrasound and unexpected similarities between atmospheric turbulence on Earth and Mars. We suggest that the observations of Mars’s atmosphere by InSight will be key for prediction capabilities and future exploration. The InSight lander has expanded our knowledge of the atmosphere of Mars by observing various phenomena, including airglow, bores, infrasound and Earth-like turbulence.
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