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レシーバー関数解析×アンビエントノイズトモグラフィー×
分野地球物理学地球物理学
系統Process / pipelineProcess / pipeline
提唱年19792005
提唱者Charles LangstonShapiro, Campillo, Stehly, and Ritzwoller
種類Teleseismic body wave analysis for subsurface imagingPassive seismic imaging via correlation of ambient noise
原典Langston, C. A. (1979). Structure under Mount Rainier, Washington, inferred from teleseismic body waves. Journal of Geophysical Research, 84(B9), 4749-4762. DOI ↗Shapiro, N. M., Campillo, M., Stehly, L., & Ritzwoller, M. H. (2005). High-resolution surface-wave tomography from ambient seismic noise. Science, 307(5715), 1615-1618. DOI ↗
別名RFANT
関連33
概要Receiver Function (RF) analysis is a seismic method that isolates P-to-S wave conversions at crustal and mantle discontinuities using teleseismic records from distant earthquakes. Introduced by Langston in 1979, RF analysis provides a cost-effective way to determine crustal thickness, Poisson's ratio, and upper mantle structure without requiring active seismic sources, making it a workhorse technique in crustal and lithospheric studies.Ambient Noise Tomography (ANT) is a seismic imaging method that extracts surface wave information from long-term records of seismic background noise, enabling high-resolution imaging of crustal and upper mantle structure. Developed by Shapiro, Campillo, and colleagues in 2005, ANT has revolutionized seismic imaging by enabling detailed crustal velocity maps at minimal cost without requiring earthquakes or active sources.
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ScholarGate手法を比較: Receiver Function Analysis · Ambient Noise Tomography. 2026-06-17に以下より取得 https://scholargate.app/ja/compare