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Titlebook: Quodons in Mica; Nonlinear Localized Juan F. R. Archilla,Noé Jiménez,Luis M. García-Raf Book 2015 Springer International Publishing Switze

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楼主: 预兆前
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Book 2015netic or of many other types, in many different types of crystals, as silicates, semiconductors and metals. The book is dedicated to the British scientist FM Russell, recently turned 80. He found 50 years ago that a mineral mica muscovite was able to record elementary charged particles and much late
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Pattern Formation by Traveling Localized Modes in Two-Dimensional Dissipative Media with Lattice Potns, i.e., persistent cycles of elastic collisions between the moving and quiescent dissipative solitons, and transient regimes featuring several collisions which end up by absorption of one soliton by the other. Another noteworthy result is transformation of a strongly kicked unstable vortex into a stably moving four-peaked cluster.
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Phonon Interference and Energy Transport in Nonlinear Lattices with Resonance Defectsnces. The width of the interference antiresonance dip can provide a measure of the coherence length of the phonon wave packet. All our conclusions are confirmed both by analytical studies of the equivalent quasi-one-dimensional lattice models and by numerical molecular dynamics simulations of realistic lattices in three dimensions.
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Electron Transfer and Tunneling from Donor to Acceptor in Anharmonic Crystal Latticesntally, even in the case of long range transitions, i.e., when the distances are well beyond 20 Å. While for short distances and weakly bound electrons the transfer is of the non-tunneling type, for larger distances and/or strongly bound electrons the transfer is tunneling-like, with the transition time varying exponentially.
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Numerical Simulations of Nonlinear Modes in Mica: Past, Present and Futuremonstrate fully two dimensional scattering of such pulses for the first time. For large interatomic forces we observe a spreading horseshoe-shaped wave, a type of shock wave but with a breather profile.
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