International audienceThe interaction between the atmosphere and the underlying solid mantle is oneof the most important sources of changes in all three components of theEarth's rotation vector on different time scales. In this paper the NCEP/NCARreanalysis time series of four times daily atmospheric effective angularmomentum (EAM) estimates is used to investigate some selected aspects of theatmospheric influence on Earth rotation. Emphasis is placed on thecontroversial features which were difficult or impossible to study using theoperational EAM data, such as excitation of the free oscillations in polarmotion, the Chandler wobble (CW) and the free core nutation (FCN), or theroles of diurnal and semidiurnal atmospheric tides and atmospheric...
Aims. We investigated the causes of the Earth’s Chandler wobble variability over the past ...
Six years of twice daily global analyses were used to create and study a lengthy time series of high...
International audienceThe purpose of this paper is to compute atmospheric torques on the Earth, incl...
International audienceThe interaction between the atmosphere and the underlying solid mantle is oneo...
International audienceThe tendency of the atmospheric angular momentum (AAM) is investigated using a...
The atmosphere strongly affects the Earth’s spin rotation in wide range of timescale from daily to a...
International audienceFrom the maps of regional contribution to atmospheric angular momentum (AAM) o...
International audienceA 29-year time-series of four-times-daily atmospheric effective angular moment...
Angular momentum of the Earth system is calculated for the past 139 years (1880-2018) including cont...
International audienceAtmospheric effects on the Earth rotation are usually estimated by assuming th...
International audienceThe atmosphere takes a minor but non-negligible part in precession-nutation. T...
International audienceThe atmospheric effect on Earth's rotation is classically computed from atmosp...
Previous studies suggest that tidal friction gives rise to the secular deceleration of the Earth rot...
The time series of the earth's rotation rate, eastern equatorial Pacific sea surface temperatur...
Aims. We investigated the causes of the Earth’s Chandler wobble variability over the past ...
Six years of twice daily global analyses were used to create and study a lengthy time series of high...
International audienceThe purpose of this paper is to compute atmospheric torques on the Earth, incl...
International audienceThe interaction between the atmosphere and the underlying solid mantle is oneo...
International audienceThe tendency of the atmospheric angular momentum (AAM) is investigated using a...
The atmosphere strongly affects the Earth’s spin rotation in wide range of timescale from daily to a...
International audienceFrom the maps of regional contribution to atmospheric angular momentum (AAM) o...
International audienceA 29-year time-series of four-times-daily atmospheric effective angular moment...
Angular momentum of the Earth system is calculated for the past 139 years (1880-2018) including cont...
International audienceAtmospheric effects on the Earth rotation are usually estimated by assuming th...
International audienceThe atmosphere takes a minor but non-negligible part in precession-nutation. T...
International audienceThe atmospheric effect on Earth's rotation is classically computed from atmosp...
Previous studies suggest that tidal friction gives rise to the secular deceleration of the Earth rot...
The time series of the earth's rotation rate, eastern equatorial Pacific sea surface temperatur...
Aims. We investigated the causes of the Earth’s Chandler wobble variability over the past ...
Six years of twice daily global analyses were used to create and study a lengthy time series of high...
International audienceThe purpose of this paper is to compute atmospheric torques on the Earth, incl...