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Fundamentals of Manybody Physics: Principles and Methods,Used
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The goal of the present course on Fundamentals of Theoretical Physics is to be a direct accompaniment to the lowerdivision study of physics, and it aims at providing the ph ical tools in the most straightforward and compact form as needed by the students in order to master theoretically more complex topics and problems in advanced studies and in research. The presentation is thus intentionally designed to be suf?ciently detailed and selfcontained sometimes, admittedly, at the cost of a certain elegance to permit in vidual study without reference to the secondary literature. This volume deals with the quantum theory of manybody systems. Building upon a basic knowledge of quantum mechanics and of statistical physics, modern techniques for the description of interacting manyparticle systems are developed and applied to various real problems, mainly from the area of solidstate physics. A thorough revision should guarantee that the reader can access the relevant research literature without experiencing major problems in terms of the concepts and vocabulary, techniques and deductive methods found there. The world which surrounds us consists of very many particles interacting with one another, and their description requires in principle the solution of a corresponding number ofcoupledquantummechanicalequationsofmotion(Schrodinger equations),which,h ever, is possible only in exceptional cases in a mathematically strict sense. The concepts of elementary quantum mechanics and quantum statistics are therefore not directly applicable in the form in which we have thus far encountered them. They require an extension and restructuring, which is termed manybody theory.
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