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Nonlinear Spatio-Temporal Dynamics and Chaos in ~ Nonlinear transport phenomena are an increasingly important aspect of modern semiconductor research. Nonlinear Spatio-Temporal Dynamics and Chaos in Semiconductors deals with complex nonlinear dynamics, pattern formation, and chaotic behaviour in such systems. In doing so it bridges the gap between two well-established fields: the theory of dynamic systems, and nonlinear charge transport in .
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(PDF) Nonlinear spatio-temporal dynamics in semiconductors ~ Nonlinear spatio-temporal dynamics in semiconductors. Article (PDF Available) in Brazilian Journal of Physics 29(4) · December 1999 with 8 Reads How we measure 'reads' A 'read' is counted each .
Nonlinear Spatio-Temporal Dynamics and Chaos in ~ 1. Semiconductors as continuous nonlinear dynamic systems; 2. Concepts of nonlinear charge transport in semiconductors; 3. Pattern formation and oscillatory instabilities in semiconductors; 4. Impact ionization induced impurity breakdown; 5. Nonlinear carrier dynamics in crossed electric and magnetic fields; 6. Stationary and oscillating domains in superlattices; 7. Spatio-temporal chaos.
Schöll, E. (2001) Nonlinear Spatio-Temporal Dynamics and ~ Schöll, E. (2001) Nonlinear Spatio-Temporal Dynamics and Chaos in Semiconductors. Cambridge University Press, Cambridge.
Nonlinear spatio-temporal dynamics due to transverse-mode ~ ELSEVIER Optics Communications 138 (1997) 95-98 15 May 1997 OPTICS COMMUNICATIONS Nonlinear spatio-temporal dynamics due to transverse-mode competition in gain-switched microcavity semiconductor lasers Joanne Y. Law 1, Govind P. Agrawal The Institute of Optics and Rochester Theory Center, Uniuersity of Rochester, Rochester, NY 14627, USA Received 30 October 1996; revised 10 December 1996 .
CiNii 図書 - Nonlinear spatio-temporal dynamics and chaos in ~ Nonlinear spatio-temporal dynamics and chaos in semiconductors. Eckehard Schöll (Cambridge nonlinear science series, 10) Cambridge University Press, 2001: hbk; 大学図書館所蔵 件 / 全 29 件. 大阪市立大学 学術情報総合センター センタ: hbk 428.8//SC6//0368 11701103688. OPAC. 大阪市立大学 学術情報総合センター 工: hbk 428.8//SC6//1037 16100109905 .
CiNii 図書 - Nonlinear spatio-temporal dynamics and chaos in ~ Nonlinear spatio-temporal dynamics and chaos in semiconductors Eckehard Schöll (Cambridge nonlinear science series, 10) Cambridge University Press, 2005 : pbk
Nonlinear Evolution of Spatio-Temporal Structures in ~ Mutual Interplay between the Break-Up of Spatial Order and the Onset of Low-Dimensional Temporal Chaos in an Exemplary Semiconductor System. Jürgen Parisi . Pages 343-350. Electroconvection in a Freely Suspended Film of Smectic a Liquid Crystal. Stephen W. Morris, John R. de Bruyn, A. D. May. Pages 351-357. Symmetry, Resonance, and Chaos. Symmetry Breaking in Nonlinear Convection. N. O. Weiss .
SPATIO-TEMPORAL NONLINEAR DYNAMICS IN A SYSTEM OF ~ spatio-temporal nonlinear dynamics in a system of illuminated and dark semiconductors Article in International Journal of Modern Physics B 23(26) · January 2012 with 5 Reads How we measure 'reads'
Nonlinear Spatio-Temporal Dynamics and Chaos in ~ Nonlinear Spatio-Temporal Dynamics and Chaos in Semiconductors (Cambridge Nonlinear Science Series) by Eckehard Schöll (2001-02-26) / Eckehard Schöll / ISBN: / Kostenloser Versand für alle Bücher mit Versand und Verkauf duch .
Nonlinear Spatio-Temporal Dynamics and Chaos in ~ Nonlinear Spatio-Temporal Dynamics and Chaos in Semiconductors Cambridge Nonlinear Science Series by Eckehard Schöll 2001-02-26: : Eckehard Schöll: Libros
Eckehard Schöll - Wikipedia ~ Eckehard Schöll (born 6 February 1951 in Stuttgart, Germany) is a German physicist and mathematician as well as a Professor of theoretical physics at the Technical University of Berlin.He is an expert in the field of nonlinear dynamics and head of the group Nonlinear dynamics and control. His work pertains to research in the fields of mathematics and physics, particularly semiconductor .
Spatio — Temporal Correlations in Semiconductors ~ These filaments may display low-dimensional nonlinear dynamics due to small structural changes like a breathing mode. Evidence is presented that typical nonlinear dynamics like quasiperiodicity and chaos is due to the nonlinear interaction of spatially localized oscillation centers. Keywords Current Filament Negative Differential Conductivity Oscillation Center Nonequilibrium Phase Transition .
Emergent dynamics of spatio-temporal chaos in a ~ Self-organized activation patterns in excitable media such as spiral waves and spatio-temporal chaos underlie dangerous cardiac arrhythmias. While the interaction of single spiral waves with different types of heterogeneity has been studied extensively, the effect of heterogeneity on fully developed spatio-temporal chaos remains poorly understood.
- Nonlinear Spatio-Temporal Dynamics and Chaos ~ Nonlinear Spatio-Temporal Dynamics and Chaos in Semiconductors deals with complex nonlinear dynamics, pattern formation, and chaotic behaviour in such systems. In doing so it bridges the gap between two well-established fields: the theory of dynamic systems, and nonlinear charge transport in semiconductors. This unified approach is used to consider important electronic transport instabilities .
On Nonlinear Waves in the Spatio-Temporal Dynamics of ~ 1 On Nonlinear Waves in the Spatio-Temporal Dynamics of Interacting Populations a) Ivan Jordanov, Nikolay K. Vitanov, Elena Nikolova, b) Institute of Mechanics, Bulgarian Academy of Sciences, Sofia, Bulgaria c) e-mail: i_jordanov@mail.bg, vitanov@imbm.bas.bg, elena@imbm.bas.bg Abstract—In this paper the spatial-temporal dynamics of the members of interacting
Observing spatio-temporal dynamics of excitable media ~ 2 Institute for Nonlinear Dynamics, Georg-August-Universität Göttingen, Friedrich-Hund-Platz 1, 37077 Göttingen, Germany 3 German Center for Cardiovascular Research (DZHK, Partner Site Göttingen) , Robert-Koch-Straße 42a, 37075 Göttingen, Germany
THE FORMATION OF VORONOI DIAGRAMS IN CHEMICAL AND PHYSICAL ~ The work discusses the formation of Voronoi diagrams in spatially extended nonlinear systems taking experimental and theoretical results into account. Concerning experimental systems a number of ch.
Nonlinear analysis of spatio-temporal receptive fields: I ~ I present an approximation method that reduces the spatio-temporal dynamics of localized solutions (also called “bumps”) in d-dimensional, n-layer nonlinear neural field equations to a set of ordinary differential equations for just the amplitudes and tuning widths of the activation peaks.This enables a simplified analysis of spatio-temporal point spread functions, steady-state receptive .
- Nonlinear Spatio-Temporal Dynamics and Chaos ~ Noté /5: Achetez Nonlinear Spatio-Temporal Dynamics and Chaos in Semiconductors (Cambridge Nonlinear Science Series) by Eckehard Schöll (2001-02-26) de Eckehard Schöll: ISBN: sur , des millions de livres livrés chez vous en 1 jour
Spatio-Temporal Chaos and Patterns Formation in ~ Spatio-Temporal Chaos and Patterns Formation in Nonequilibrium Media: Phenomenological Model of Electronic Turbulence. E.S.Mchedlova and D.I.Trubetskov College of Applied Science Saratov State University, 83 Astrakhanskaya, Saratov 410071, Russia The processes in nonequilibrium dissipative media caused by coherent structure formation and lead to the complicated dynamics are of interest for .
Linear and Nonlinear Analysis of Spatio-Temporal Chaos in ~ The spatio-temporal chaotic behavior of magnetic spin wave states in Yttrium Iron Garnet films is experimentally studied and analyzed. A 37 micron sample is placed in a DC magnetic field to align the atomic spins, which are then excited at resonant frequencies. Chaotic spin wave states result when surface modes of the film begin to interact above an excitation power threshold.
Reaction–diffusion system - Wikipedia ~ Reaction–diffusion systems are mathematical models which correspond to several physical phenomena. The most common is the change in space and time of the concentration of one or more chemical substances: local chemical reactions in which the substances are transformed into each other, and diffusion which causes the substances to spread out over a surface in space.
Nonlinear temporal dynamics of a strongly coupled quantum ~ Nonlinear temporal dynamics of a strongly coupled quantum-dot–cavity system . De, 85.35.Be I. INTRODUCTION A single quantum dot (QD) coupled to a photonic crys-tal microcavity constitutes an integrated nanophotonic plat-form for probing solid-state cavity quantum electrodynamic (CQED) effects [1]. The eigenstates of this coupled system form an anharmonic ladder, which results in an optical .