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Multiple Scales in Solid State Physics

机译:固态物理学中的多尺度

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摘要

The quest for an accurate simulations of the physical world, most vividly expressed in the vision of Laplace's daemon [1], is almost as old as quantitative science. Naturally, such a simulation requires the knowledge of all the relevant physical laws, i.e., a Theory of Everything. For the phenomena involving scales larger than an atomic nucleus and smaller than a star, or, equivalently, for processes at ordinary energies, it is known. This Theory of almost Everything is the combination of Newtonian gravity, Maxwell's theory of electrodynamics, Boltzmann's statistical mechanics, and quantum mechanics [2, 3].
机译:在拉普拉斯的守护程序[1]的愿景中最生动地表达了对物理世界的精确模拟的追求,几乎与定量科学一样古老。自然地,这种模拟需要了解所有相关的物理定律,即万物理论。对于涉及尺度大于原子核且小于恒星的现象,或者等效地,对于以普通能量进行的过程,这是已知的。这种几乎所有的理论都是牛顿引力,麦克斯韦电动力学理论,玻尔兹曼统计力学和量子力学的结合[2,3]。

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