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Интеллектуальная Система Тематического Исследования НАукометрических данных |
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Superconducting spintronics has emerged in the last decade as a promising new field that seeks to open a new dimension for nanoelectronics by utilizing the internal spin structure of the superconducting Cooper pair as a new degree of freedom. Currently, the discipline finds itself at the crossroads for developing first-generation devices. One of the main elements of superconducting spintronics is the superconducting spin valve. For ideal operation of such device, the in-plane supercurrent in the superconducting layer can be controlled by the mutual orientation of magnetization in the ferromagnetic layers. I will discuss different types of spin-valve effect (usual and triplet) in different spin-valve structures, as well as the new effect of remote magnetization, found recently in such structures.