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Introduction to the Physics of Electrons in Solids

机译:固体电子物理导论

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摘要

This textbook sets out to enable readers to understand fundamental aspects underlying quantum macroscopic phenomena in solids, primarily through the modern experimental techniques and results. The classic independent-electrons approach for describing the electronic structure in terms of energy bands helps explain the occurrence of metals, insulators and semiconductors. It is underlined that superconductivity and magnetism can only be understood by taking into account the interactions between electrons. The text recounts the experimental observations that have revealed the main properties of the superconductors and were essential to track its physical origin. While fundamental concepts are underlined, those which are required to describe the high technology applications, present or future, are emphasized as well. Problem sets involve experimental approaches and tools which support a practical understanding of the materials and their behaviour. Key features of this textbook are: - Modern treatment of condensed matter based on quantum mechanisms and research methods common to magnetism and superconductivity. - Explains metallic and insulating states via the independent-electron approach to electronic structure and band gaps. - Presents the most prominent physical phenomena associated with superconductivity. - Explains metallic, insulating states and the peculier case of graphene via the independent electron approach. - Emphasizes physical behavior and high-tech applications while deemphasizing mathematical derivations. -  Learning reinforced by content-rich figures, chapter-end summaries, exercises and solutions. - Developed and class-tested in the eminent program of the Ecole Polytechnique.
机译:该教科书旨在使读者能够主要通过现代实验技术和结果来理解固体量子宏观现象的基本方面。用能带描述电子结构的经典独立电子方法有助于解释金属,绝缘体和半导体的出现。要强调的是,超导性和磁性只能通过考虑电子之间的相互作用来理解。文字叙述了实验观察结果,这些发现揭示了超导体的主要特性,对于追踪其物理起源至关重要。在强调基本概念的同时,也强调了描述当前或将来的高科技应用所需的那些概念。习题集涉及实验方法和工具,有助于对材料及其行为进行实际的理解。这本教科书的主要特点是:-基于量子机理和磁性和超导性通用研究方法的现代凝聚态处理。 -通过独立电子方法解释电子结构和带隙,解释金属态和绝缘态。 -提出与超导有关的最突出的物理现象。 -通过独立的电子方法说明金属,绝缘态和石墨烯的特殊情况。 -强调身体行为和高科技应用,同时不强调数学推导。 -通过内容丰富的数字,章末摘要,练习和解决方案加强学习。 -在Ecole Polytechnique的杰出计划中进行开发和等级测试。

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  • 作者

    Alloul, Henri;

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  • 年度 2011
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