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Nonlinear waves = from dissipative s...
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Kengne, Emmanuel.
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Nonlinear waves = from dissipative solitons to magnetic solitons /
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Nonlinear waves/ by Emmanuel Kengne, WuMing Liu.
其他題名:
from dissipative solitons to magnetic solitons /
作者:
Kengne, Emmanuel.
其他作者:
Liu, WuMing.
出版者:
Singapore :Springer Nature Singapore : : 2022.,
面頁冊數:
xxiv, 513 p. :ill., digital ;24 cm.
內容註:
Nonlinear Schrödinger models for solitons propagation in 1D lossless nonlinear transmission networks (NLTNs) -- Transmission of dissipative soliton like signals through one-dimensional transmission networks -- Emission of rogue wave signals in nonlinear electrical transmission networks -- Emission of nonlinear modulated waves in multi-coupled nonlinear transmission networks -- Dynamics of one-dimensional condensates with time modulation of the scattering length and trapping potential -- Rogue matter waves in Bose-Einstein condensates trapped in time-varying external potentials -- Dynamics of matter-wave solitons in multi-component Bose-Einstein condensates -- Dynamics of higher-dimensional condensates with time modulated nonlinearity -- Engineering matter-wave solitons in spinor Bose-Einstein condensates -- Engineering magnetic solitons in nonlinear systems -- Current driven dynamics of magnetization in ferromagnet with spin-transfer torque.
Contained By:
Springer Nature eBook
標題:
Nonlinear waves. -
電子資源:
https://doi.org/10.1007/978-981-19-6744-3
ISBN:
9789811967443
Nonlinear waves = from dissipative solitons to magnetic solitons /
Kengne, Emmanuel.
Nonlinear waves
from dissipative solitons to magnetic solitons /[electronic resource] :by Emmanuel Kengne, WuMing Liu. - Singapore :Springer Nature Singapore :2022. - xxiv, 513 p. :ill., digital ;24 cm.
Nonlinear Schrödinger models for solitons propagation in 1D lossless nonlinear transmission networks (NLTNs) -- Transmission of dissipative soliton like signals through one-dimensional transmission networks -- Emission of rogue wave signals in nonlinear electrical transmission networks -- Emission of nonlinear modulated waves in multi-coupled nonlinear transmission networks -- Dynamics of one-dimensional condensates with time modulation of the scattering length and trapping potential -- Rogue matter waves in Bose-Einstein condensates trapped in time-varying external potentials -- Dynamics of matter-wave solitons in multi-component Bose-Einstein condensates -- Dynamics of higher-dimensional condensates with time modulated nonlinearity -- Engineering matter-wave solitons in spinor Bose-Einstein condensates -- Engineering magnetic solitons in nonlinear systems -- Current driven dynamics of magnetization in ferromagnet with spin-transfer torque.
This book highlights the methods to engineer dissipative and magnetic nonlinear waves propagating in nonlinear systems. In the first part of the book, the authors present methodologically mathematical models of nonlinear waves propagating in one- and two-dimensional nonlinear transmission networks without/with dissipative elements. Based on these models, the authors investigate the generation and the transmission of nonlinear modulated waves, in general, and solitary waves, in particular, in networks under consideration. In the second part of the book, the authors develop basic theoretical results for the dynamics matter-wave and magnetic-wave solitons of nonlinear systems and of Bose-Einstein condensates trapped in external potentials, combined with the time-modulated nonlinearity. The models treated here are based on one-, two-, and three-component non-autonomous Gross-Pitaevskii equations. Based on the Heisenberg model of spin-spin interactions, the authors also investigate the dynamics of magnetization in ferromagnet with or without spin-transfer torque. This research book is suitable for physicists, mathematicians, engineers, and graduate students in physics, mathematics, and network and information engineering.
ISBN: 9789811967443
Standard No.: 10.1007/978-981-19-6744-3doiSubjects--Topical Terms:
671954
Nonlinear waves.
LC Class. No.: QA927 / .K46 2022
Dewey Class. No.: 531.1133
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Nonlinear Schrödinger models for solitons propagation in 1D lossless nonlinear transmission networks (NLTNs) -- Transmission of dissipative soliton like signals through one-dimensional transmission networks -- Emission of rogue wave signals in nonlinear electrical transmission networks -- Emission of nonlinear modulated waves in multi-coupled nonlinear transmission networks -- Dynamics of one-dimensional condensates with time modulation of the scattering length and trapping potential -- Rogue matter waves in Bose-Einstein condensates trapped in time-varying external potentials -- Dynamics of matter-wave solitons in multi-component Bose-Einstein condensates -- Dynamics of higher-dimensional condensates with time modulated nonlinearity -- Engineering matter-wave solitons in spinor Bose-Einstein condensates -- Engineering magnetic solitons in nonlinear systems -- Current driven dynamics of magnetization in ferromagnet with spin-transfer torque.
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This book highlights the methods to engineer dissipative and magnetic nonlinear waves propagating in nonlinear systems. In the first part of the book, the authors present methodologically mathematical models of nonlinear waves propagating in one- and two-dimensional nonlinear transmission networks without/with dissipative elements. Based on these models, the authors investigate the generation and the transmission of nonlinear modulated waves, in general, and solitary waves, in particular, in networks under consideration. In the second part of the book, the authors develop basic theoretical results for the dynamics matter-wave and magnetic-wave solitons of nonlinear systems and of Bose-Einstein condensates trapped in external potentials, combined with the time-modulated nonlinearity. The models treated here are based on one-, two-, and three-component non-autonomous Gross-Pitaevskii equations. Based on the Heisenberg model of spin-spin interactions, the authors also investigate the dynamics of magnetization in ferromagnet with or without spin-transfer torque. This research book is suitable for physicists, mathematicians, engineers, and graduate students in physics, mathematics, and network and information engineering.
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