Solid State Physics

Solid State Physics
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DOI:
10.1017/9781108123815
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发表时间:
2020-01
期刊:
--
影响因子:
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通讯作者:
D. Snoke
D. Snoke
中科院分区:
其他
文献类型:
--
作者:
D. Snoke

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通过识别跨固体物理统一的概念,这篇文章涵盖理论在一个可访问的方式,为研究生提供效果的直观理解和基础进行定量计算。每一章都侧重于一套不同的理论工具,使用来自特定系统的例子,并演示实际应用到真实的实验主题。先进的理论方法,包括群论,多体理论,相变以一种易于理解的方式介绍,准粒子的概念是早期发展,与讨论的性质和相互作用的电子和空穴,激子,声子,光子,和极化子。新到这一版的部分是石墨烯,表面状态,光发射光谱,二维光谱,晶体管器件物理,热电,超材料,自旋电子学,激子极化,和通量量子化在超导体。本书还提供了练习,帮助将知识应用于实践,并为教师提供了在线解决方案手册,而附录则回顾了书中使用的基本数学方法。
By identifying unifying concepts across solid state physics, this text covers theory in an accessible way to provide graduate students with an intuitive understanding of effects and the basis for making quantitative calculations. Each chapter focuses on a different set of theoretical tools, using examples from specific systems and demonstrating practical applications to real experimental topics. Advanced theoretical methods including group theory, many-body theory, and phase transitions are introduced in an accessible way, and the quasiparticle concept is developed early, with discussion of the properties and interactions of electrons and holes, excitons, phonons, photons, and polaritons. New to this edition are sections on graphene, surface states, photoemission spectroscopy, 2D spectroscopy, transistor device physics, thermoelectricity, metamaterials, spintronics, exciton-polaritons, and flux quantization in superconductors. Exercises are provided to help put knowledge into practice, with a solutions manual for instructors available online, while appendices review the basic mathematical methods used in the book.