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 #  AuthorTitleAccn#YearItem Type Claims
1 Oughstun, Kurt E Electromagnetic and Optical Pulse Propagation I09471 2019 eBook  
2 Oughstun, Kurt E Electromagnetic and Optical Pulse Propagation I09389 2019 eBook  
3 Oughstun, Kurt E Electromagnetic and Optical Pulse Propagation 1 I06582 2007 eBook  
4 Oughstun, Kurt E Electromagnetic and Optical Pulse Propagation 2 I05627 2009 eBook  
5 Oughstun, Kurt E Electromagnetic Pulse Propagation in Casual Dielectrics I02315 1994 eBook  
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1.    
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TitleElectromagnetic and Optical Pulse Propagation : Volume 1: Spectral Representations in Temporally Dispersive Media
Author(s)Oughstun, Kurt E
PublicationCham, Springer International Publishing, 2019.
DescriptionXXVI, 737 p. 150 illus., 45 illus. in color : online resource
Abstract NoteIn 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 absorptive media. This expanded, updated, and reorganized new edition presents a rigorous development of both time- and frequency-domain electromagnetics, from classical theory to current topics in applied research on temporally pulsed wave fields in dielectric, conducting, and semiconducting materials. With meaningful exercises throughout, it is suitable as a graduate textbook in electromagnetic wave theory and will be of use to researchers as a resource on electromagnetic radiation and wave propagation theory with applications to radar, imaging, communications, and safety issues. Volume 1 develops the fundamental Maxwell-Lorentz theory of microscopic electromagnetics and its relationship to macroscopic electromagnetics in complex media with particular emphasis given to temporally dispersive materials, supplemented with several appendices on mathematical methods. The second edition includes new material on conjugate electromagnetic fields, time-reversal invariance, the four-potential and Lorentz invariance, anisotropic and spatially dispersive media, double-negative metamaterials, and generalized Fresnel reflection and refraction coefficients for complex media. The relationship between both the mathematical and physical interpretation of classical electromagnetic field theory with the special theory of relativity is emphasized throughout the volume. Volume 2 covers temporal pulse dynamics in dispersive attenuative media, with asymptotic analysis at the forefront
ISBN,Price9783030208356
Keyword(s)1. ATOMS 2. Atoms and Molecules in Strong Fields, Laser Matter Interaction 3. CLASSICAL ELECTRODYNAMICS 4. EBOOK 5. EBOOK - SPRINGER 6. ELECTRODYNAMICS 7. LASERS 8. Mathematical Methods in Physics 9. MICROWAVES 10. Microwaves, RF and Optical Engineering 11. OPTICAL ENGINEERING 12. OPTICS 13. Optics, Lasers, Photonics, Optical Devices 14. PHOTONICS 15. PHYSICS
Item TypeeBook
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Accession#  Call#StatusIssued ToReturn Due On Physical Location
I09471     On Shelf    

2.     
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TitleElectromagnetic and Optical Pulse Propagation : Volume 2: Temporal Pulse Dynamics in Dispersive Attenuative Media
Author(s)Oughstun, Kurt E
PublicationCham, Springer International Publishing, 2019.
DescriptionXXV, 794 p. 339 illus., 38 illus. in color : online resource
Abstract NoteIn 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
ISBN,Price9783030206925
Keyword(s)1. ATOMS 2. Atoms and Molecules in Strong Fields, Laser Matter Interaction 3. CLASSICAL ELECTRODYNAMICS 4. EBOOK 5. EBOOK - SPRINGER 6. ELECTRODYNAMICS 7. LASERS 8. Mathematical Methods in Physics 9. MICROWAVES 10. Microwaves, RF and Optical Engineering 11. OPTICAL ENGINEERING 12. OPTICS 13. Optics, Lasers, Photonics, Optical Devices 14. PHOTONICS 15. PHYSICS
Item TypeeBook
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Accession#  Call#StatusIssued ToReturn Due On Physical Location
I09389     On Shelf    

3.     
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TitleElectromagnetic and Optical Pulse Propagation 1 : Spectral Representations in Temporally Dispersive Media
Author(s)Oughstun, Kurt E
PublicationNew York, NY, Springer New York, 2007.
DescriptionXVI, 458 p : online resource
Abstract NoteElectromagnetic & Optical Pulse Propagation presents a systematic treatment of the radiation and propagation of transient electromagnetic and optical wave fields (such as those used in ultrawideband radar and communications sysyems as well as in ultrashort pulsed optics) through causal, locally linear media which exhibit both temporal dispersion and absorption. Volume I presents a detailed, rigorous development of the fundamental theory of both time and frequency-domain electromagnetics, beginning with the classical Maxwell-Lorentz theory of microscopic electromagnetic fields and ist invariance in the special theory of relativity, the correlation of the microscopic and macroscopic fields, and the angular spectrum representation of pulsed radiation fields in causally dispersive media. The theory provides a rigorous framework for applied research treating temporally pulsed wave fields in dielectric, conducting and semiconducting materials. Volume II presents the asymptotic description of specific pulsed wave fields in both Debye and Lorentz model dielectrics, Drude model conductors and composite model semiconductors
ISBN,Price9780387347301
Keyword(s)1. CLASSICAL ELECTRODYNAMICS 2. EBOOK 3. EBOOK - SPRINGER 4. ELECTRODYNAMICS 5. MICROWAVES 6. Microwaves, RF and Optical Engineering 7. OPTICAL ENGINEERING 8. OPTICS
Item TypeeBook
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Circulation Data
Accession#  Call#StatusIssued ToReturn Due On Physical Location
I06582     On Shelf    

4.     
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TitleElectromagnetic and Optical Pulse Propagation 2 : Temporal Pulse Dynamics in Dispersive, Attenuative Media
Author(s)Oughstun, Kurt E
PublicationNew York, NY, Springer New York, 2009.
DescriptionXV, 831 p. 350 illus : online resource
Abstract NoteElectromagnetic and Optical Pulse Propagation presents a systematic treatment of the radiation and propagation of transient electromagnetic and optical wave fields (such as those used in ultrawideband radar and communications systems as well as in ultrashort pulsed optics) through causal, locally linear media which exhibit both temporal dispersion and absorption. Volume I presents a detailed, rigorous development of the fundamental theory of both time and frequency-domain electromagnetics, beginning with the classical Maxwell-Lorentz theory of microscopic electromagnetic fields and its invariance in the special theory of relativity, the correlation of the microscopic and macroscopic fields, and the angular spectrum representation of pulsed radiation fields in causally dispersive media. The theory provides a rigorous framework for applied research treating temporally pulsed wave fields in dielectric, conducting and semiconducting materials. Volume II presents the asymptotic description of specific pulsed wave fields in both Debye and Lorentz model dielectrics, Drude model conductors and composite model semiconductors
ISBN,Price9781441901491
Keyword(s)1. CLASSICAL ELECTRODYNAMICS 2. EBOOK 3. EBOOK - SPRINGER 4. ELECTRODYNAMICS 5. MICROWAVES 6. Microwaves, RF and Optical Engineering 7. OPTICAL ENGINEERING 8. OPTICS
Item TypeeBook
Multi-Media Links
Please Click here for eBook
Circulation Data
Accession#  Call#StatusIssued ToReturn Due On Physical Location
I05627     On Shelf    

5.    
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TitleElectromagnetic Pulse Propagation in Casual Dielectrics
Author(s)Oughstun, Kurt E;Sherman, G.C
PublicationBerlin, Heidelberg, Springer Berlin Heidelberg, 1994.
DescriptionXII, 465 p : online resource
Abstract NoteElectromagnetic Pulse Propagation in Causal Dielectrics presents a systematic treatment of the theory of the propagation of transient electromagnetic fields (such as ultrashort, ultrawide-band pulses) through homogeneous, isotopic, locally linear media which exhibit both dispersion and absorption. The subject of the book is twofold. Part I presents a detailed rigorous treatment of the fundamental theory of electromagnetic pulse propagation in causally dispersive media that is applicable to dielectric, conducting, or semiconducting media. Part II provides a detailed asymptotic description of plane-wave pulse propagation in a Lorentz model dielectric and provides a rigorous account ot the signal velocity of a pulse in that dispersive medium
ISBN,Price9783642612275
Keyword(s)1. EBOOK 2. EBOOK - SPRINGER 3. LASERS 4. Optics, Lasers, Photonics, Optical Devices 5. PHOTONICS
Item TypeeBook
Multi-Media Links
Please Click here for eBook
Circulation Data
Accession#  Call#StatusIssued ToReturn Due On Physical Location
I02315     On Shelf    

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