000 03521cam a22003615a 4500
999 _c9448
_d9448
001 17263231
003 OSt
005 20190505134719.0
008 120419s2012 nyu 000 0 eng
010 _a 2012938038
020 _a9783642303098
040 _aDLC
_cDLC
_dDLC
042 _apcc
082 0 4 _222
_a621.3
_bK.G.A
100 1 _aKouzaev, Guennadi A.
245 1 0 _aApplications of advanced electromagnetics :
_bcomponents and systems /
_cGuennadi A. Kouzaev.
250 _a1st ed.
260 _aNew York :
_bSpringer,
_c2012.
263 _a1207
264 _aNew York :
_bSpringer,
_c2012.
300 _ap. cm.
336 _2rdacontent
_atext
337 _2rdamedia
_aunmediated
338 _2rdacarrier
_avolume
490 0 _aLecture notes in electrical engineering ;
_v169
500 _aengineering bookfair2015
505 0 _a Basic Electromagnetics -- Theory of Waveguides -- Waveguide Discontinuities and Components -- Geometro-topological Approaches to the EM Problems -- Technologies for Microwave and High-speed Electronics -- Transmission Lines and Their EM Models for the Extended Frequency Bandwidth Applications -- Inter-component Transitions for Ultra-bandwidth Integrations -- Integrated Filters and Power Distribution Circuits -- Circuit Approach for Simulation of EM-quantum Components -- EM Topological Signaling and Computing -- EM Radiometry and Imaging.
520 _aRich with examples and illustrations, this book surveys advances in electromagnetics: electromagnetic-quantum equations in modeling of microwave-quantum integrated circuits, topological methods for analyzing the boundary value problem and many more innovations. This text, directed to the microwave engineers and Master and PhD students, is on the use of electromagnetics to the development and design of advanced integrated components distinguished by their extended field of applications. The results of hundreds of authors scattered in numerous journals and conference proceedings are carefully reviewed and classed. Several chapters are to refresh the knowledge of readers in advanced electromagnetics. New techniques are represented by compact electromagnetic–quantum equations which can be used in modeling of microwave-quantum integrated circuits of future In addition, a topological method to the boundary value problem analysis is considered with the results and examples. One extended chapter is for the development and design of integrated components for extended bandwidth applications, and the technology and electromagnetic issues of silicon integrated transmission lines, transitions, filters, power dividers, directional couplers, etc are considered. Novel prospective interconnects based on different physical effects are reviewed as well. The ideas of topology is applicable to the electromagnetic signaling and computing, when the vector field maps can carry discrete information, and this area and the results in topological signaling obtained by different authors are analyzed, including the recently designed predicate logic processor operating spatially represented signal units. The book is rich of practical examples, illustrations, and references and useful for the specialists working at the edge of contemporary technology and electromagnetics.
856 _3Abstract
_uhttp://repository.fue.edu.eg/xmlui/handle/123456789/4019
906 _a0
_bibc
_corignew
_d2
_eepcn
_f20
_gy-gencatlg
942 _2ddc
_cBK