01368cam--2200457---450-99000242412020331620140227123430.088-424-9469-0000242412USA01000242412(ALEPH)000242412USA0100024241220050526d1998----km-y0itay50------baitaITa|||||||001yyStoria sociale dell'acquariti e culturePaolo SorcinelliMilanoBruno Mondadori1998192 p.ill.17 cmTesti e pretesti2001Testi e pretestiAcquaUtilizzazioneStoria333.911309SORCINELLI,Paolo128222ITsalbcISBD990002424120203316III.2. 484(II 1 53)2567 DSSSIII.2.00352667S X h 34775 DLMS XO795351 DBCO795BKUMADILAMDBCDSSS11020050526USA011052DILAM9020070508USA011057DBC9020080229USA011422ANNAMARIA9020140224USA011152ANNAMARIA9020140224USA011407ANNAMARIA9020140227USA011234Storia sociale dell'acqua506119UNISA03854nam 22006855 450 991049517060332120251204110102.03-030-68582-910.1007/978-3-030-68582-9(CKB)4100000011994342(DE-He213)978-3-030-68582-9(MiAaPQ)EBC6688335(Au-PeEL)EBL6688335(OCoLC)1263025698(PPN)257355219(EXLCZ)99410000001199434220210802d2021 u| 0engurnn|008mamaatxtrdacontentcrdamediacrrdacarrierSpin Waves Problems and Solutions /by Daniel D. Stancil, Anil Prabhakar1st ed. 2021.Cham :Springer International Publishing :Imprint: Springer,2021.1 online resource (XIII, 246 p. 37 illus., 6 illus. in color.) 3-030-68581-0 Introduction to Magnetism -- Quantum Theory of Spin Waves -- Magnetic Susceptibilities -- Electromagnetic Waves in Anisotropic Dispersive Media -- Magnetostatic Modes -- Propagation Characteristics and Excitation of Dipolar Spin Waves -- Variational Formulation of Magnetostatic Modes -- Optical Spin-Wave Interactions -- Nonlinear Interactions -- Novel Applications.This book presents a collection of problems in spin wave excitations with their detailed solutions. Each chapter briefly introduces the important concepts, encouraging the reader to further explore the physics of spin wave excitations and the engineering of spin wave devices by working through the accompanying problem sets. The initial chapters cover the fundamental aspects of magnetization, with its origins in quantum mechanics, followed by chapters on spin wave excitations, such as the magnetostatic approximation, Walker's equation, the spin wave manifold in the three different excitation geometries of forward volume, backward volume and surface waves, and the dispersion of spin waves. The latter chapters focus on the practical aspects of spin waves and spin wave optical devices and use the problem sets to introduce concepts such as variational analysis and coupled mode theory. Finally, for the more advanced reader, the book covers nonlinear interactions and topics such as spin wavequantization, spin torque excitations, and the inverse Doppler effect. The topics range in difficulty from elementary to advanced. All problems are solved in detail and the reader is encouraged to develop an understanding of spin wave excitations and spin wave devices while also strengthening their mathematical, analytical, and numerical programming skills.MagnetismTelecommunicationElectronicsSignal processingElectrical engineeringMagnetismMicrowaves, RF Engineering and Optical CommunicationsElectronics and Microelectronics, InstrumentationSignal, Speech and Image ProcessingElectrical and Electronic EngineeringMagnetism.Telecommunication.Electronics.Signal processing.Electrical engineering.Magnetism.Microwaves, RF Engineering and Optical Communications.Electronics and Microelectronics, Instrumentation.Signal, Speech and Image Processing.Electrical and Electronic Engineering.538.3538.3Stancil Daniel D.962436Prabhakar AnilMiAaPQMiAaPQMiAaPQBOOK9910495170603321Spin Waves2182334UNINA