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- W59383766 abstract "Publisher Summary This chapter reviews a variety of wave phenomena and analytic techniques that wave modellers have at their disposal for general field propagation and diffraction scenarios. The main objective is to address complex configurations by concentrating on space-time localization that permits the use of specific well-defined simpler problems from which global solutions are assembled. Such wave-based architecture has been facilitated here by using a class of “isodiffracting pulsed beams” (PB) which not only provides simple wave-objects for local interrogation of a particular sub-environment in the global conglomerate, but also provides a complete basis for construction of arbitrary source-excited field in the global environment. The building block options reviewed here include exact and paraxially approximated pulsed beam (PB) solutions in homogeneous and inhomogeneous media, exact and approximate techniques for modeling PB scattering and diffraction, and local spectrum techniques using PBs. This range of options is far from comprehensive. Such generalized beam methods are finding increased application in forward and inverse scattering problems in complex environments, yielding numerically efficient benchmark reference solutions for physics-based parameterization and calibration of analytic and numerical forward scattering algorithms. In inverse problems, beam parameterization can provide efficient forward solvers for local interrogation and subsequent object or profile reconstruction, and the trend toward short-time-scale applications makes the PB parameterization especially relevant." @default.
- W59383766 created "2016-06-24" @default.
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- W59383766 date "2002-01-01" @default.
- W59383766 modified "2023-10-13" @default.
- W59383766 title "Pulsed Beam Solution for Propagation and Scattering Problems" @default.
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