Scinovex
article

Iterative deconvolution and receiver-function estimation

Bulletin of the Seismological Society of America · 1999 · Vol. 89(5) · pp. 1395–1400
Juan Pablo LigorríaCharles J. Ammon

Abstract

Abstract We describe and apply an iterative, time-domain deconvolution approach to receiver-function estimation and illustrate the reliability and advantages of the technique using synthetic- and observation-based examples. The iterative technique is commonly used in earthquake time-function studies and offers several advantages in receiver-function analysis such as intuitively stripping the largest receiver-function arrivals from the observed seismograms first and then the details; long-period stability by a priori constructing the deconvolution as a sum of Gaussian pulses; and easy generalization to allow multiwaveform deconvolution for a single receiver-function estimate.

High-pressure geophysics and materialsearthquake and tectonic studiesSeismic Waves and AnalysisDeconvolutionAlgorithmFunction (biology)Blind deconvolutionGeneralizationComputer scienceStability (learning theory)GaussianA priori and a posterioriMathematics
Citations
1,367
FWCI
2.47
field-weighted impact
References
22
Percentile
88%
vs. same field & year
Citations per year
References
Structure under Mount Rainier, Washington, inferred from teleseismic body waves
Journal of Geophysical Research Atmospheres · 1979 · 1,612 citations
Inversion of complex body waves—III
Bulletin of the Seismological Society of America · 1991 · 1,125 citations
The isolation of receiver effects from teleseismic<i>P</i>waveforms
Bulletin of the Seismological Society of America · 1991 · 802 citations
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.