The main goal of this work is to improve our understanding of the Earth’s rheology and of the Chandler wobble which depends on it. We compute the complex gravimetric factor at the Chandler frequency by a joint analysis of gravimetric and polar motion time series. We show the importance and the limits of gravimetric corrections for local analyses and the effectiveness of the combination of data from different stations. Using a more theoretical approach, we carry out an analytical and numerical study to determine the solutions of the small deformations of an anelastic homogeneous rotating Earth model. The influence of anelasticity on the Chandler wobble period and quality factoris studied and we show that the latter is more sensitive than the...
Normally, the wobble of the earth has been dealt with in a manner that assumes that the two main per...
The problem of the correlation of the global dynamic phenomenon “Chandler wobble” with the local dyn...
The polar motion excitation is mainly due to the mass transport of the atmosphere and the oceans. So...
The main goal of this work is to improve our understanding of the Earth’s rheology and of the Chandl...
L’objectif principal de ce travail est d’améliorer notre compréhension de la rhéologie terrestre et ...
International audienceTo study the Earth global deformation at periods ranging from a few hours to a...
The Chandler wobble is one of the elastic-gravitational normal modes of the Earth. The eigenperiod i...
The Chandler wobble is one of the elastic-gravitational normal modes of the Earth. The eigenperiod i...
Aims. We investigated the causes of the Earth’s Chandler wobble variability over the past ...
none3siIn recent years a number of studies have investigated the influence of compressibility on geo...
International audienceWe compute the gravimetric factor at the Chandler wobble (CW) frequency using ...
The Earth's rotational normal modes depend on Earth model used, including the layer structures, prin...
International audienceSUMMARY Long term deformations strongly depend on the earth model and its rheo...
This study aims to improve the polar motion theory by developing refined frequency-dependent transfe...
Depuis le début du vingtième siècle, l’observation des variations de rotation de la Terre par les te...
Normally, the wobble of the earth has been dealt with in a manner that assumes that the two main per...
The problem of the correlation of the global dynamic phenomenon “Chandler wobble” with the local dyn...
The polar motion excitation is mainly due to the mass transport of the atmosphere and the oceans. So...
The main goal of this work is to improve our understanding of the Earth’s rheology and of the Chandl...
L’objectif principal de ce travail est d’améliorer notre compréhension de la rhéologie terrestre et ...
International audienceTo study the Earth global deformation at periods ranging from a few hours to a...
The Chandler wobble is one of the elastic-gravitational normal modes of the Earth. The eigenperiod i...
The Chandler wobble is one of the elastic-gravitational normal modes of the Earth. The eigenperiod i...
Aims. We investigated the causes of the Earth’s Chandler wobble variability over the past ...
none3siIn recent years a number of studies have investigated the influence of compressibility on geo...
International audienceWe compute the gravimetric factor at the Chandler wobble (CW) frequency using ...
The Earth's rotational normal modes depend on Earth model used, including the layer structures, prin...
International audienceSUMMARY Long term deformations strongly depend on the earth model and its rheo...
This study aims to improve the polar motion theory by developing refined frequency-dependent transfe...
Depuis le début du vingtième siècle, l’observation des variations de rotation de la Terre par les te...
Normally, the wobble of the earth has been dealt with in a manner that assumes that the two main per...
The problem of the correlation of the global dynamic phenomenon “Chandler wobble” with the local dyn...
The polar motion excitation is mainly due to the mass transport of the atmosphere and the oceans. So...