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Titlebook: Atomic- and Nanoscale Magnetism; Roland Wiesendanger Book 2018 Springer Nature Switzerland AG 2018 Single Spins.Molecular Magnetism.Non-Co

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,IT — eine Industrie hat sich normalisiert,nd biochemistry. We review a recently developed approach to analyzing spin coupling in terms of local pathways, which allows to evaluate how much each part of a structure contributes to coupling, and present examples of how first-principles electronic structure theory can help to understand spin cou
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,IT — eine Industrie hat sich normalisiert,terface -induced Dzyaloshinskii–Moriya interaction (DMI)can play a crucial role for the magnetic ground state. In particular, DMI-induced magnetic skyrmions, which are particle-like knots in the magnetization of two-dimensional systems, have attracted significant attention due to their potential use
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Werden Sie ein Engineering-Unternehmen,al magnetic structuring steadily increases. Particularly, several uniaxial as well as two-dimensionally modulated magnetic states were found with unique rotational sense due to the spin-orbit based Dzyaloshinskii-Moriya-interaction. Another source for the modulated magnetic configurations is given b
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Werden Sie ein Engineering-Unternehmen,iscuss analytical results and numerical data obtained by the density-matrix renormalization group and the real-space dynamical mean-field theory for the multi-impurity Kondo model. This model hosts complex physics resulting from the competition or cooperation of different mechanisms, such as the Kon
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,Erratum zu: Führen von Jung und Alt,. Modifications of the dynamics arising from the presence of the biased magnetic probe tip are identified in terms of spin-transfer torque, Joule heating, Oersted field, magneto-electric coupling and spin-polarized field emission. Observing the switching behavior over a wide temperature range allows
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d spatial resolution. This chapter details time-resolved imaging techniques for probing the transient evolution of the magnetization in small magnetic systems in the visible and soft X-ray spectral range. Optical methods using femtosecond laser pulses can follow ultrafast processes with an extreme t
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