磁学与磁性材料

D. Tang, C. Pai
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摘要

这一章解释了现代磁学从20世纪初开始的历程,这是一个非凡的科学突破时代,导致了量子力学和狭义相对论的诞生。现代对磁性的理解是基于自旋的概念,这是一个纯粹的量子力学性质,没有经典的类比。因此,从当代的角度来讨论磁性,我们应该从量子力学开始。而不是简单地通过公式推导和跳入现代-但-后见之明自旋为基础的解释微观起源的磁性物质,相反,本章简要地讨论了其发展的历史。根据它们对外加磁场的响应,这些磁性可以大致分为抗磁性、顺磁性、铁磁性、反铁磁性和铁磁性。抗磁性存在于所有材料中,但当存在不成对电子时,通常被顺磁性或铁磁性所掩盖。
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Magnetism and Magnetic Materials
This chapter explains the journey of modern magnetism from the beginning of the twentieth century, a remarkable age of scientific breakthroughs that led tithe birth of quantum mechanics and special relativity. A modern understanding of magnetism is based on the concept of spin, which is a purely quantum mechanical property with no classical analogy. To discuss magnetism in a contemporary perspective, therefore, we should start from quantum mechanics. Rather than simply going through formula derivations and jumping into the modern‐yet‐hindsight spin‐based interpretation of microscopic origin of magnetism in matters, instead, the chapter briefly discusses the history of its development. Depending on their responses to the applied magnetic field, these magnetic properties can be roughly categorized into diamagnetism, paramagnet‐ism, ferromagnetism, anti ferromagnetism, and ferrimagnetism. Diamagnetism is present in all materials but is often obscured by paramagnetism or ferromagnetism when unpaired electrons are in presence.
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Magnetism and Magnetic Materials Appendix C: High‐Bandwidth Design Considerations for STT‐MRAM Basic Electromagnetism Advanced Switching MRAM Modes Appendix A: Retention Bake (Including Two‐Way Flip)
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