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On seismic interferometry, the generalized optical theorem, and the scattering matrix of a point scatterer

TLDR
In this article, a far-field approximation of the Green's function representation for seismic interferometry is analyzed, and the generalized optical theorem is derived from the nonlinear scattering matrix of a point scatterer.
Abstract
We have analyzed the far-field approximation of the Green's function representation for seismic interferometry. By writing each of the Green's functions involved in the correlation process as a superposition of a direct wave and a scattered wave, the Green's function representation is rewritten as a superposition of four terms. When the scattered waves are modeled with the Born approximation, it appears that a three-term approximation of the Green's function representation (omitting the term containing the crosscorrelation of the scattered waves) yields a nearly exact retrieval, whereas the full four-term expression leads to a significant nonphysical event. This is because the Born approximation does not conserve energy and therefore is an insufficient model to explain all aspects of seismic interferometry. We use the full four-term expression of the Green's function representation to derive the generalized optical theorem. Unlike other recent derivations, which use stationary phase analysis, our derivation uses reciprocity theory. From the generalized optical theorem, we derive the nonlinear scattering matrix of a point scatterer. This nonlinear model accounts for primary and multiple scattering at the point scatterer and conforms with well-established scattering theory of classical waves. The model is essential to explain fully the results of seismic interferometry, even when it is applied to the response of a single point scatterer. The nonlinear scattering matrix also has implications for modeling, inversion, and migration.

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Journal ArticleDOI

Tutorial on seismic interferometry: Part 2 — Underlying theory and new advances

TL;DR: In this article, a trace-by-trace deconvolution process was proposed to compensate for complex source functions and the attenuation of the medium, which can also compensate for the effects of one-sided and/or irregular illumination.
Book

Seismic Wave Propagation and Scattering in the Heterogeneous Earth: Second Edition

TL;DR: In this article, the authors proposed a method to discover the seismic wave propagation and scattering in the heterogeneous earth second edition book right here by downloading and getting the soft file of the book.
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Surface and borehole ground-penetrating-radar developments

TL;DR: The specific aspects of borehole radar are discussed and recent developments to become more sensitive to orientation and to exploit the supplementary information in different components in polarimetric uses of radar data are described.
Journal ArticleDOI

Full-azimuth subsurface angle domain wavefield decomposition and imaging Part I: Directional and reflection image gathers

Zvi Koren, +1 more
- 01 Jan 2011 - 
TL;DR: In this paper, the authors present a new subsurface angle-domain seismic imaging system for generating and extracting high-resolution information about the surface angle-dependent reflectivity, which enables geophysicists to use all recorded seismic data in a continuous fashion.
Journal ArticleDOI

On Green’s function retrieval by iterative substitution of the coupled Marchenko equations

TL;DR: In this article, the authors propose an iterative substitution of the coupled Marchenko equations to retrieve the Green's functions from a source or receiver array at an acquisition surface to an arbitrary location in an acoustic medium.
References
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Journal ArticleDOI

A Comparison of Strategies for Seismic Interferometry

TL;DR: It is shown that the extracted field may satisfy different boundary conditions than does the physical field, which can be used to suppress surface-related multiples in exploration seismology, to study the coupling of buildings to the subsurface, and to remove the airwave in controlled source electromagnetics (CSEM).
Journal ArticleDOI

An inverse scattering formula that uses all the data

TL;DR: In this article, an inverse scattering formula is derived for an ensemble of experiments in which a three-dimensional scattering object is illuminated by an impulsive point source which successively occupies all positions on a surface surrounding the object.
Journal ArticleDOI

Diffraction-Limited Scalar Image Formation with Holograms of Arbitrary Shape

TL;DR: In this paper, a theory of image formation is presented for a large-angle, point reference hologram, whose recording arrangement consists of a surface of arbitrary shape, a point reference source, and the object.
Journal ArticleDOI

Die beobachtbaren Größen in der Theorie der Elementarteilchen. III

TL;DR: In this paper, a spatere abanderung der Theorie of Elementarteilchen is discussed, in which the zukunftige Theorie in ihren Grundlagen eine universelle Konstante von der Dimension einer Lange enthalten wird, die in the bisherige Form der Theoria offenbar nicht widerspruchsfrei eingebaut werden kann.
Journal ArticleDOI

Generalized reaction principles and reciprocity theorems for the wave equations, and the relationship between the time‐advanced and time‐retarded fields

TL;DR: In this paper, generalized reaction principles and generalized reciprocity theorems for scalar and vector wave equations are derived and cast in terms of the time-retarded and time-advanced fields.
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