International audienceDue to tidal interactions in the Earth-Moon system, the spin of the Earth slows down and the Moon drifts away. This recession of the Moon can now be measured with great precision, but it was noticed more than fifty years ago that simple tidal models extrapolated back in time lead to an age of the Moon that is largely incompatible with the geochronological and geochemical evidence. In order to evade this problem, more elaborate models have been proposed, taking into account the oceanic tidal dissipation. However, these models have not been able to fit both the estimated lunar age and the present rate of lunar recession simultaneously. In the present work, we present a physical model that reconciles these two constraints...
We have obtained empirical laws for the variation of the Earth parameters with geologic time that ar...
The study of tides from the sedimentary record of tidal rhythmites, applying fast Fourier transform ...
The dynamical evolution of the Earth-Moon system due to tidal friction is treated here. George H. Da...
International audienceDue to tidal interactions in the Earth-Moon system, the spin of the Earth slow...
Due to tidal interactions in the Earth-Moon system, the spin of the Earth slows down and the Moon dr...
We present an expression for the tidal time delay of the Earth, that takes into account paleontholog...
Tides and Earth-Moon system evolution are coupled over geological time. Tidal energy dissipation on ...
The angular momentum of the Earth‐Moon system was initially dominated by Earth's rotation with a sho...
International audienceThe theoretical prediction of Earth-Moon dynamics in deep geologic time is ham...
The angular momentum of the Earth-Moon system was initially dominated by Earth's rotation with a sho...
The angular momentum of the Earth-Moon system was initially dominated by Earth's rotation with a...
Tides and Earth‐Moon system evolution are coupled over geological time. Tidal energy dissipation on ...
Over the past decade the analysis of sedimentary cyclic rhythmites of tidal origin, i.e., stacked th...
We have presented a cosmological model for the tidal evolution of the Earth-Moon system. We have fou...
Regardless of one's favorite model for the origin of the Earth-Moon system (fission, coformation, ti...
We have obtained empirical laws for the variation of the Earth parameters with geologic time that ar...
The study of tides from the sedimentary record of tidal rhythmites, applying fast Fourier transform ...
The dynamical evolution of the Earth-Moon system due to tidal friction is treated here. George H. Da...
International audienceDue to tidal interactions in the Earth-Moon system, the spin of the Earth slow...
Due to tidal interactions in the Earth-Moon system, the spin of the Earth slows down and the Moon dr...
We present an expression for the tidal time delay of the Earth, that takes into account paleontholog...
Tides and Earth-Moon system evolution are coupled over geological time. Tidal energy dissipation on ...
The angular momentum of the Earth‐Moon system was initially dominated by Earth's rotation with a sho...
International audienceThe theoretical prediction of Earth-Moon dynamics in deep geologic time is ham...
The angular momentum of the Earth-Moon system was initially dominated by Earth's rotation with a sho...
The angular momentum of the Earth-Moon system was initially dominated by Earth's rotation with a...
Tides and Earth‐Moon system evolution are coupled over geological time. Tidal energy dissipation on ...
Over the past decade the analysis of sedimentary cyclic rhythmites of tidal origin, i.e., stacked th...
We have presented a cosmological model for the tidal evolution of the Earth-Moon system. We have fou...
Regardless of one's favorite model for the origin of the Earth-Moon system (fission, coformation, ti...
We have obtained empirical laws for the variation of the Earth parameters with geologic time that ar...
The study of tides from the sedimentary record of tidal rhythmites, applying fast Fourier transform ...
The dynamical evolution of the Earth-Moon system due to tidal friction is treated here. George H. Da...