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標(biāo)題: Titlebook: Many-Body Schr?dinger Dynamics of Bose-Einstein Condensates; Kaspar Sakmann Book 2011 Springer-Verlag Berlin Heidelberg 2011 Bosonic Jose [打印本頁(yè)]

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,Quantum Dynamics of Attractive Versus Repulsive Bosonic Josephson Junctions: Bose–Hubbard and Full-–Hubbard model and by numerically-exact computations of the full many-body Hamiltonian. A symmetry present in the Bose–Hubbard Hamiltonian dictates an equivalence between the evolution in time of attractive and repulsive Josephson junctions with attractive and repulsive interactions of equal magnitu
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Book 2011erent types of condensates? -- so called fragmented condensates -- exist. In order to tell whether fragmentation occurs or not, it is necessary to solve the full many-body Schr?dinger equation, a task that remained elusive for experimentally relevant conditions for many years. In this thesis the fir
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Optimal Time-Dependent Lattice Models for Nonequilibrium Dynamics,odels from the variational principle we show that it is possible to exploit the additional freedom introduced by allowing the Wannier functions to depend on time, to improve the lattice model. Since all parameters are then determined by the variational principle the lattice model becomes optimal.
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2190-5053 tter than conventional models.Nominated as an outstanding co.At extremely low temperatures, clouds of bosonic atoms form what is known as a Bose-Einstein condensate. Recently, it has become clear that many different types of condensates? -- so called fragmented condensates -- exist. In order to tell
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https://doi.org/10.1007/978-3-642-22866-7Bosonic Josephson junction; Exact solution Schr?dinger equation; Fragmented condensates; Many-body Bose
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Springer Theseshttp://image.papertrans.cn/m/image/623686.jpg
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Many-Body Schr?dinger Dynamics of Bose-Einstein Condensates
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reasoning, Wright gives a brilliant analysis of the complex internal structure of our concepts of health and disease, showing that our present models are wholly incapable of dealing with the realities of actual human disease. He then shows the error of assuming that we always know in advance what t
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