Diurnal temperature variations and migrating thermal tides in the Martian lower atmosphere observed by the Emirates Mars InfraRed Spectrometer

Fuente: arXiv
Salvato in:
Dettagli Bibliografici
Autori principali: Fan, Siteng, Forget, François, Smith, Michael D., Wilson, R. John, Guerlet, Sandrine, Badri, Khalid M., Atwood, Samuel A., Young, Roland M. B., Edwards, Christopher S., Christensen, Philip R., Deighan, Justin, Matroushi, Hessa R. Al, Bierjon, Antoine, Liu, Jiandong, Millour, Ehouarn
Natura: Preprint
Pubblicazione: 2025
Soggetti:
Accesso online:
Tags: Aggiungi Tag
Nessun Tag, puoi essere il primo ad aggiungerne!!
_version_ 1866908604876980224
author Fan, Siteng
Forget, François
Smith, Michael D.
Wilson, R. John
Guerlet, Sandrine
Badri, Khalid M.
Atwood, Samuel A.
Young, Roland M. B.
Edwards, Christopher S.
Christensen, Philip R.
Deighan, Justin
Matroushi, Hessa R. Al
Bierjon, Antoine
Liu, Jiandong
Millour, Ehouarn
author_facet Fan, Siteng
Forget, François
Smith, Michael D.
Wilson, R. John
Guerlet, Sandrine
Badri, Khalid M.
Atwood, Samuel A.
Young, Roland M. B.
Edwards, Christopher S.
Christensen, Philip R.
Deighan, Justin
Matroushi, Hessa R. Al
Bierjon, Antoine
Liu, Jiandong
Millour, Ehouarn
contents The Martian atmosphere experiences large diurnal variations due to the ~24.6 h planetary rotation and its low heat capacity. Understanding such variations on a planetary scale is limited due to the lack of observations, which are greatly addressed with the recent advent of the Emirates Mars Mission (EMM). As a result of its unique high-altitude orbit, instruments onboard are capable of obtaining a full geographic and local time coverage of the Martian atmosphere every 9-10 Martian days, approximately ~5° in solar longitude (LS). This enables investigations of the diurnal variation of the current climate on Mars on a planetary scale without significant local time (LT) gaps or confusions from correlated seasonal variations. Here, we present the results of diurnal temperature variations and thermal tides in the Martian atmosphere using temperature profiles retrieved from the Emirates Mars InfraRed Spectrometer (EMIRS) observations. The data during the primary mission is included, covering an entire Martian Year (MY) starting from MY 36 LS = 49°. The diurnal temperature patterns suggest a dominant diurnal tide in most seasons, while the semi-diurnal tide presents a similar amplitude near perihelion. The seasonal variation of the diurnal tide latitudinal distribution is well explained by the total vorticity due to zonal wind, while that of the semi-diurnal tide following both dust and water ice clouds, and the ter-diurnal tide following the dust only. Comparison with the updated Mars Planetary Climate Model (PCM, version 6) suggest improvements in simulating the dust and water cycles, as well as their radiative processes.
format Preprint
id arxiv_https___arxiv_org_abs_2510_18702
institution arXiv
publishDate 2025
record_format arxiv
spellingShingle Diurnal temperature variations and migrating thermal tides in the Martian lower atmosphere observed by the Emirates Mars InfraRed Spectrometer
Fan, Siteng
Forget, François
Smith, Michael D.
Wilson, R. John
Guerlet, Sandrine
Badri, Khalid M.
Atwood, Samuel A.
Young, Roland M. B.
Edwards, Christopher S.
Christensen, Philip R.
Deighan, Justin
Matroushi, Hessa R. Al
Bierjon, Antoine
Liu, Jiandong
Millour, Ehouarn
Earth and Planetary Astrophysics
The Martian atmosphere experiences large diurnal variations due to the ~24.6 h planetary rotation and its low heat capacity. Understanding such variations on a planetary scale is limited due to the lack of observations, which are greatly addressed with the recent advent of the Emirates Mars Mission (EMM). As a result of its unique high-altitude orbit, instruments onboard are capable of obtaining a full geographic and local time coverage of the Martian atmosphere every 9-10 Martian days, approximately ~5° in solar longitude (LS). This enables investigations of the diurnal variation of the current climate on Mars on a planetary scale without significant local time (LT) gaps or confusions from correlated seasonal variations. Here, we present the results of diurnal temperature variations and thermal tides in the Martian atmosphere using temperature profiles retrieved from the Emirates Mars InfraRed Spectrometer (EMIRS) observations. The data during the primary mission is included, covering an entire Martian Year (MY) starting from MY 36 LS = 49°. The diurnal temperature patterns suggest a dominant diurnal tide in most seasons, while the semi-diurnal tide presents a similar amplitude near perihelion. The seasonal variation of the diurnal tide latitudinal distribution is well explained by the total vorticity due to zonal wind, while that of the semi-diurnal tide following both dust and water ice clouds, and the ter-diurnal tide following the dust only. Comparison with the updated Mars Planetary Climate Model (PCM, version 6) suggest improvements in simulating the dust and water cycles, as well as their radiative processes.
title Diurnal temperature variations and migrating thermal tides in the Martian lower atmosphere observed by the Emirates Mars InfraRed Spectrometer
topic Earth and Planetary Astrophysics
url https://arxiv.org/abs/2510.18702