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Pulse Propagation in an Inhomogeneous Medium

Pulse Propagation in an Inhomogeneous Medium PDF Author: Donald Brooks Longcope
Publisher:
ISBN:
Category : Elastic waves
Languages : en
Pages : 280

Book Description


Pulse Propagation in an Inhomogeneous Medium

Pulse Propagation in an Inhomogeneous Medium PDF Author: Donald Brooks Longcope
Publisher:
ISBN:
Category : Elastic waves
Languages : en
Pages : 280

Book Description


Propagation of a Pulse in a Inhomogeneous Medium

Propagation of a Pulse in a Inhomogeneous Medium PDF Author: Friedrich Gerhart Friedlander
Publisher:
ISBN:
Category :
Languages : en
Pages : 92

Book Description


Propagation of a Pulse in an Inhomogeneous Medium (Classic Reprint)

Propagation of a Pulse in an Inhomogeneous Medium (Classic Reprint) PDF Author: F. G. Friedlander
Publisher:
ISBN: 9781332778928
Category : Mathematics
Languages : en
Pages : 58

Book Description
Excerpt from Propagation of a Pulse in an Inhomogeneous Medium The coefficient En can be determined recursively, essentially by integration of the wave equation along the ray from (xo, y0) to. About the Publisher Forgotten Books publishes hundreds of thousands of rare and classic books. Find more at www.forgottenbooks.com This book is a reproduction of an important historical work. Forgotten Books uses state-of-the-art technology to digitally reconstruct the work, preserving the original format whilst repairing imperfections present in the aged copy. In rare cases, an imperfection in the original, such as a blemish or missing page, may be replicated in our edition. We do, however, repair the vast majority of imperfections successfully; any imperfections that remain are intentionally left to preserve the state of such historical works.

Inhomogeneous Broadening Effects on Pulse Propagation in Gaseous Laser Medium

Inhomogeneous Broadening Effects on Pulse Propagation in Gaseous Laser Medium PDF Author: Tsungming Tsai
Publisher:
ISBN:
Category :
Languages : en
Pages : 86

Book Description


Inhomogeneous Broadening Effects on Pulse Propagation in Gaseous Laser Medium

Inhomogeneous Broadening Effects on Pulse Propagation in Gaseous Laser Medium PDF Author: Tsungming Tsai (Sc.M. 1977)
Publisher:
ISBN:
Category :
Languages : en
Pages : 86

Book Description


Electromagnetic and Optical Pulse Propagation

Electromagnetic and Optical Pulse Propagation PDF Author: Kurt E. Oughstun
Publisher: Springer
ISBN: 3030208354
Category : Science
Languages : en
Pages : 753

Book Description
This volume presents a detailed, rigorous treatment of the fundamental theory of electromagnetic pulse propagation in causally dispersive media that is applicable to dielectric, conducting, and semiconducting media. Asymptotic methods of approximation based upon saddle point methods are presented in detail.

Electromagnetic and Optical Pulse Propagation 1

Electromagnetic and Optical Pulse Propagation 1 PDF Author: Kurt E. Oughstun
Publisher: Springer
ISBN: 0387347305
Category : Science
Languages : en
Pages : 464

Book Description
This volume presents a detailed, rigorous treatment of the fundamental theory of electromagnetic pulse propagation in causally dispersive media that is applicable to dielectric, conducting, and semiconducting media. Asymptotic methods of approximation based upon saddle point methods are presented in detail.

Electromagnetic and Optical Pulse Propagation 2

Electromagnetic and Optical Pulse Propagation 2 PDF Author: Kurt E. Oughstun
Publisher: Springer Science & Business Media
ISBN: 1441901493
Category : Science
Languages : en
Pages : 841

Book Description
Electromagnetic & Optical Pulse Propagation presents a detailed, systematic treatment of the time-domain electromagnetics with application to the propagation of transient electromagnetic fields (including ultrawideband signals and ultrashort pulses) in homogeneous, isotropic media which exhibit both temporal frequency dispersion and attenuation. The development is mathematically rigorous with strict adherence to the fundamental physical principle of causality. Approximation methods are based upon mathematically well-defined asymptotic techniques that are based upon the saddle point method. A detailed description is given of the asymptotic expansions used. Meaningful exercises are given throughout the text to help the reader‘s understanding of the material, making the book a useful graduate level text in electromagnetic wave theory for both physics, electrical engineering and materials science programs. Both students and researchers alike will obtain a better understanding of time domain electromagnetics as it applies to electromagnetic radiation and wave propagation theory with applications to ground and foliage penetrating radar, medical imaging, communications, and the health and safety issues associated with ultrawideband pulsed fields. Volume 2 presents a detailed asymptotic description of plane wave pulse propagation in dielectric, conducting, and semiconducting materials as described by the classical Lorentz model of dielectric resonance, the Rocard-Powles-Debys model of orientational polarization, and the Drude model of metals. The rigorous description of the signal velocity of a pulse in a dispersive material is presented in connection with the question of superluminal pulse propagation.

The Propagation and Coupling of Waves in Inhomogeneous Media with Applications to Electromagnetic and Space Charge Waves (on the Propagation of Waves in an Inhomogeneous Medium Ii).

The Propagation and Coupling of Waves in Inhomogeneous Media with Applications to Electromagnetic and Space Charge Waves (on the Propagation of Waves in an Inhomogeneous Medium Ii). PDF Author: O. E. H. RYDBECK
Publisher:
ISBN:
Category :
Languages : en
Pages : 1

Book Description
Contents: The second order wave equation The coupled amplitude equations of the second order-wave equations Examples of 4-wave systems The general n:th order wave equation treated by coupling methods Energy flow relations of the n-wave system Intensity relations of the n-wave system Transformation of the first order coupled equations On the choice of the total field of the coupled system and the boundary conditions The geometrical interpretation of the amplitude transformation coefficients of the n-wave system.

Electromagnetic and Optical Pulse Propagation

Electromagnetic and Optical Pulse Propagation PDF Author: Kurt E. Oughstun
Publisher: Springer
ISBN: 3030206920
Category : Science
Languages : en
Pages : 810

Book Description
In two volumes, this book presents a detailed, systematic treatment of electromagnetics with application to the propagation of transient electromagnetic fields (including ultrawideband signals and ultrashort pulses) in dispersive attenuative media. The development in this expanded, updated, and reorganized new edition is mathematically rigorous, progressing from classical theory to the asymptotic description of pulsed wave fields in Debye and Lorentz model dielectrics, Drude model conductors, and composite model semiconductors. It will be of use to researchers as a resource on electromagnetic radiation and wave propagation theory with applications to ground and foliage penetrating radar, medical imaging, communications, and safety issues associated with ultrawideband pulsed fields. With meaningful exercises, and an authoritative selection of topics, it can also be used as a textbook to prepare graduate students for research. Volume 2 presents a detailed asymptotic description of plane wave pulse propagation in dielectric, conducting, and semiconducting materials as described by the classical Lorentz model of dielectric resonance, the Rocard-Powles-Debye model of orientational polarization, and the Drude model of metals. The rigorous description of the signal velocity of a pulse in a dispersive material is presented in connection with the question of superluminal pulse propagation. The second edition contains new material on the effects of spatial dispersion on precursor formation, and pulse transmission into a dispersive half space and into multilayered media. Volume 1 covers spectral representations in temporally dispersive media.