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YIG magnonics

机译:Y IgM AG no你CS

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摘要

Early experiments in magnonics were made using ferrite samples, largely due to the intrinsically low magnetic (spin-wave) damping in these materials. Historically, magnonic phenomena were studied on micrometre to millimetre length scales. Today, the principal challenge in applied magnonics is to create sub-micrometre devices using modern polycrystalline magnetic alloys. However, until certain technical obstacles are overcome in these materials, ferrites-in particular yttrium iron garnet (YIG)-remain a valuable source of insight. At a time when interest in magnonic systems is particularly strong, it is both useful and timely to review the main scientific results of YIG magnonics of the last two decades, and to discuss the transferability of the concepts and ideas learned in ferrite materials to modern nano-scale systems.
机译:使用铁氧体样品进行了早期的磁强实验,这主要是由于这些材料固有的低磁(自旋波)阻尼。历史上,对马格尼克现象的研究范围是微米到毫米长。如今,应用磁电学的主要挑战是使用现代多晶磁性合金制造亚微米级器件。但是,在克服这些材料中的某些技术障碍之前,铁氧体-特别是钇铁石榴石(YIG)-仍然是有价值的见识来源。在对超生磁子系统特别感兴趣的时代,回顾过去二十年的YIG磁强子学的主要科学成果,并讨论在铁氧体材料中学到的概念和思想向现代纳米技术的可移植性,既有用又及时。规模的系统。

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