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- W2797570202 abstract "Abstract Tectonic tremors, low‐frequency earthquakes, very low‐frequency earthquakes, and slow slip events are all regarded as components of broadband slow earthquakes, which can be modeled as a stochastic process using Brownian motion. Here we show that the Brownian slow earthquake model provides theoretical relationships among the seismic moment, seismic energy, and source duration of slow earthquakes and that this model explains various estimates of these quantities in three major subduction zones: Japan, Cascadia, and Mexico. While the estimates for these three regions are similar at the seismological frequencies, the seismic moment rates are significantly different in the geodetic observation. This difference is ascribed to the difference in the characteristic times of the Brownian slow earthquake model, which is controlled by the width of the source area. We also show that the model can include non‐Gaussian fluctuations, which better explains recent findings of a near‐constant source duration for low‐frequency earthquake families." @default.
- W2797570202 created "2018-04-24" @default.
- W2797570202 creator A5043196438 @default.
- W2797570202 creator A5045975048 @default.
- W2797570202 date "2018-04-13" @default.
- W2797570202 modified "2023-10-18" @default.
- W2797570202 title "Seismic Moment, Seismic Energy, and Source Duration of Slow Earthquakes: Application of Brownian slow earthquake model to three major subduction zones" @default.
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- W2797570202 doi "https://doi.org/10.1002/2018gl077461" @default.
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