International audienceMicroseismic activity, recorded everywhere on Earth, is largely due to ocean waves. Recent progress has clearly identified sources of microseisms in the most energetic band, with periods from 3 to 10 s. In contrast, the generation of longer-period microseisms has been strongly debated. Two mechanisms have been proposed to explain seismic wave generation: a primary mechanism, by which ocean waves propagating over bottom slopes generate seismic waves, and a secondary mechanism which relies on the nonlinear interaction of ocean waves. Here we show that the primary mechanism explains the average power, frequency distribution, and most of the variability in signals recorded by vertical seismometers, for seismic periods rang...
International audienceWe study the origin of the background seismic noise averaged over long time by...
International audienceWe study the origin of the background seismic noise averaged over long time by...
International audienceWe study the origin of the background seismic noise averaged over long time by...
International audienceMicroseismic activity, recorded everywhere on Earth, is largely due to ocean w...
International audienceMicroseismic activity, recorded everywhere on Earth, is largely due to ocean w...
International audienceMicroseismic activity, recorded everywhere on Earth, is largely due to ocean w...
International audienceMicroseismic activity, recorded everywhere on Earth, is largely due to ocean w...
International audienceMicroseismic activity, recorded everywhere on Earth, is largely due to ocean w...
International audienceMicroseismic activity, recorded everywhere on Earth, is largely due to ocean w...
Microseismic activity, recorded everywhere on Earth, is largely due to ocean waves. Recent progress ...
Primary microseisms are background seismic oscillations recorded everywhere on Earth with typical fr...
Continuous oscillations of the Earth are observed for frequencies between 2 and 7 mHz at almost ever...
International audienceNoise with periods 3 to 10 s, ubiquitous in seismic records, is expected to be...
International audienceWe study the origin of the background seismic noise averaged over long time by...
International audienceWe study the origin of the background seismic noise averaged over long time by...
International audienceWe study the origin of the background seismic noise averaged over long time by...
International audienceWe study the origin of the background seismic noise averaged over long time by...
International audienceWe study the origin of the background seismic noise averaged over long time by...
International audienceMicroseismic activity, recorded everywhere on Earth, is largely due to ocean w...
International audienceMicroseismic activity, recorded everywhere on Earth, is largely due to ocean w...
International audienceMicroseismic activity, recorded everywhere on Earth, is largely due to ocean w...
International audienceMicroseismic activity, recorded everywhere on Earth, is largely due to ocean w...
International audienceMicroseismic activity, recorded everywhere on Earth, is largely due to ocean w...
International audienceMicroseismic activity, recorded everywhere on Earth, is largely due to ocean w...
Microseismic activity, recorded everywhere on Earth, is largely due to ocean waves. Recent progress ...
Primary microseisms are background seismic oscillations recorded everywhere on Earth with typical fr...
Continuous oscillations of the Earth are observed for frequencies between 2 and 7 mHz at almost ever...
International audienceNoise with periods 3 to 10 s, ubiquitous in seismic records, is expected to be...
International audienceWe study the origin of the background seismic noise averaged over long time by...
International audienceWe study the origin of the background seismic noise averaged over long time by...
International audienceWe study the origin of the background seismic noise averaged over long time by...
International audienceWe study the origin of the background seismic noise averaged over long time by...
International audienceWe study the origin of the background seismic noise averaged over long time by...