[1] Secondary microseisms are the most energetic waves in the noise spectra between 3 and 10 s. They are generated by ocean wave interactions and are predominantly Rayleigh waves. We study the associated noise sources in the North Atlantic Ocean by coupling noise polarization analysis and source mapping using an ocean wave model that takes into account coastal reflections. From the Rayleigh wave polarization analysis, we retrieve the back azimuth to the noise sources in the time-frequency domain. Noise source modeling enables us to locate the associated generation areas at different times and frequencies. We analyze the distribution of secondary microseism sources in the North Atlantic Ocean using 20 broadband stations located in the Arctic...
The interaction of ocean waves with either the seafloor or other ocean waves generates primary (PM) ...
[1] We quantify, analyze, and characterize the frequency‐dependent microseismic noise recorded by wo...
International audienceSecondary microseisms are the most energetic noise in continuous seismometer r...
International audienceSecondary microseisms are the most energetic waves in the noise spectra betwee...
International audienceThe strongest seismic noise, called secondary microseisms, is generated by oce...
International audienceNoise with periods 3 to 10 s, ubiquitous in seismic records, is expected to be...
Ocean waves activity is a major source of microvibrations that travel through the solid Earth, known...
The interaction of ocean waves with either the seafloor or other ocean waves generates primary (PM) ...
The location of oceanic sources of the micrometric ground displacement recorded at land stations in ...
International audienceSecondary microseisms recorded by seismic stations are generated in the ocean ...
Ambient seismic noises exist everywhere on Earth. The interaction of ocean waves generates microseis...
International audienceWe quantify, analyze, and characterize the frequency-dependent microseismic no...
International audienceWe study the origin of the background seismic noise averaged over long time by...
Primary and secondary microseism originating in the world oceans and peaking at around 14 and 7 s, r...
In the absence of earthquakes, oceanic microseisms are the strongest signals recorded by seismic sta...
The interaction of ocean waves with either the seafloor or other ocean waves generates primary (PM) ...
[1] We quantify, analyze, and characterize the frequency‐dependent microseismic noise recorded by wo...
International audienceSecondary microseisms are the most energetic noise in continuous seismometer r...
International audienceSecondary microseisms are the most energetic waves in the noise spectra betwee...
International audienceThe strongest seismic noise, called secondary microseisms, is generated by oce...
International audienceNoise with periods 3 to 10 s, ubiquitous in seismic records, is expected to be...
Ocean waves activity is a major source of microvibrations that travel through the solid Earth, known...
The interaction of ocean waves with either the seafloor or other ocean waves generates primary (PM) ...
The location of oceanic sources of the micrometric ground displacement recorded at land stations in ...
International audienceSecondary microseisms recorded by seismic stations are generated in the ocean ...
Ambient seismic noises exist everywhere on Earth. The interaction of ocean waves generates microseis...
International audienceWe quantify, analyze, and characterize the frequency-dependent microseismic no...
International audienceWe study the origin of the background seismic noise averaged over long time by...
Primary and secondary microseism originating in the world oceans and peaking at around 14 and 7 s, r...
In the absence of earthquakes, oceanic microseisms are the strongest signals recorded by seismic sta...
The interaction of ocean waves with either the seafloor or other ocean waves generates primary (PM) ...
[1] We quantify, analyze, and characterize the frequency‐dependent microseismic noise recorded by wo...
International audienceSecondary microseisms are the most energetic noise in continuous seismometer r...