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Titlebook: Electromagnetic and Optical Pulse Propagation; Volume 1: Spectral R Kurt E. Oughstun Book 2019Latest edition Springer Nature Switzerland AG

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發(fā)表于 2025-3-21 17:31:53 | 只看該作者 |倒序?yàn)g覽 |閱讀模式
書目名稱Electromagnetic and Optical Pulse Propagation
副標(biāo)題Volume 1: Spectral R
編輯Kurt E. Oughstun
視頻videohttp://file.papertrans.cn/307/306050/306050.mp4
概述Presents a rigorous development of the classical microscopic Maxwell-Lorentz theory.Describes detailed development of the dipole radiation field from the Liénard-Wiechert potentials.Introduces the cor
叢書名稱Springer Series in Optical Sciences
圖書封面Titlebook: Electromagnetic and Optical Pulse Propagation; Volume 1: Spectral R Kurt E. Oughstun Book 2019Latest edition Springer Nature Switzerland AG
描述.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 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 particularemphasis given to temporally dispersive materials, supplemented with several appendices on mathematical methods. The second edition includes new material on conjugate electromagnetic fields, time-reversal i
出版日期Book 2019Latest edition
關(guān)鍵詞electromagnetic wave; time-domain electromagnetics; time-domain optics; ultrashort pulses; microscopic e
版次2
doihttps://doi.org/10.1007/978-3-030-20835-6
isbn_softcover978-3-030-20837-0
isbn_ebook978-3-030-20835-6Series ISSN 0342-4111 Series E-ISSN 1556-1534
issn_series 0342-4111
copyrightSpringer Nature Switzerland AG 2019
The information of publication is updating

書目名稱Electromagnetic and Optical Pulse Propagation影響因子(影響力)




書目名稱Electromagnetic and Optical Pulse Propagation影響因子(影響力)學(xué)科排名




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書目名稱Electromagnetic and Optical Pulse Propagation網(wǎng)絡(luò)公開度學(xué)科排名




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The Normativity of Globalizationime. The detailed properties of such free-fields were first studied in detail by Sherman, Devaney and Mandel, Sherman, Stamnes, Devaney and Lalor, and Devaney and Sherman in the early 1970s. Such fields are of interest because they form the simplest type of wave phenomena encountered in both electromagnetics and optics.
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Free Fields in Temporally Dispersive Media,ime. The detailed properties of such free-fields were first studied in detail by Sherman, Devaney and Mandel, Sherman, Stamnes, Devaney and Lalor, and Devaney and Sherman in the early 1970s. Such fields are of interest because they form the simplest type of wave phenomena encountered in both electromagnetics and optics.
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978-3-030-20837-0Springer Nature Switzerland AG 2019
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Electromagnetic and Optical Pulse Propagation978-3-030-20835-6Series ISSN 0342-4111 Series E-ISSN 1556-1534
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發(fā)表于 2025-3-22 17:32:18 | 只看該作者
https://doi.org/10.1007/978-3-8349-4391-0 a dielectric waveguide) is a classical problem in both electromagnetics and optics. With Maxwell’s unifying theory of electromagnetism and optics, Lorentz’s classical model of dielectric dispersion, and Einstein’s special theory of relativity, the stage was set for a long-standing problem of some c
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https://doi.org/10.1007/978-3-642-92650-1at produce microscopic electric and magnetic fields. The microscopic equations of electromagnetics given in Eqs. (2.33)–(2.36) together with the Lorentz force relation given in Eq. (2.21) describe the detailed classical behavior of the charged particles and fields, as presented in Chaps. 2 and 3. Th
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