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Titlebook: Macroscopic Limits of Quantum Systems; Munich, Germany, Mar Daniela Cadamuro,Maximilian Duell,Sergio Simonella Conference proceedings 2018

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書目名稱Macroscopic Limits of Quantum Systems
副標(biāo)題Munich, Germany, Mar
編輯Daniela Cadamuro,Maximilian Duell,Sergio Simonella
視頻videohttp://file.papertrans.cn/622/621089/621089.mp4
概述Investigates the mathematics of collective phenomena emerging from quantum theory at observable scales.Highlights fruitful connections to functional analysis, spectral theory, statistical mechanics, a
叢書名稱Springer Proceedings in Mathematics & Statistics
圖書封面Titlebook: Macroscopic Limits of Quantum Systems; Munich, Germany, Mar Daniela Cadamuro,Maximilian Duell,Sergio Simonella Conference proceedings 2018
描述Based on the workshop of the same name, this proceedings volume presents selected research investigating the mathematics of collective phenomena emerging from quantum theory at observable scales. Featured contributions from leading scientists provide a thorough overview of current and active research. Methods from functional analysis, spectral theory, renormalization group theory, and variational calculus are used to prove rigorous results in quantum physics. Topics include superconductivity and mathematical aspects of the BCS theory, the Jellium model and Bose-Einstein condensation, among others. Presenting technical details in an accessible way, this book serves as an introduction to research for advanced graduate students and is suitable for specialists in mathematical physics..The workshop “.Macroscopic Limits of Quantum Systems.” was held over three days in the spring of 2017 at the Technical University of Munich. The conference celebrated the achievementsof Herbert Spohn and his reception of the Max Planck Medal..
出版日期Conference proceedings 2018
關(guān)鍵詞Quantum Systems; Macroscopic Limits; proceedings; quantum theory; bosonic systems; fermionic systems; supe
版次1
doihttps://doi.org/10.1007/978-3-030-01602-9
isbn_softcover978-3-030-13187-6
isbn_ebook978-3-030-01602-9Series ISSN 2194-1009 Series E-ISSN 2194-1017
issn_series 2194-1009
copyrightSpringer Nature Switzerland AG 2018
The information of publication is updating

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Effective Dynamics of Two Tracer Particles Coupled to a Fermi Gas in the High-Density Limit,ed to a dense and homogeneous ideal Fermi gas in two spatial dimensions. In that paper, closeness of the time evolution to an effective . dynamics for . of the gas was proven. The main point of interest of this result was to consider coupling constants that do not scale with the density of the gas.
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Mean-Field Evolution of Fermions with Singular Interaction, solution of the many-body Schr?dinger equation to a solution of the time-dependent Hartree–Fock equation in the sense of reduced density matrices, for a specific class of initial data, namely translation-invariant states. We stress the dependence on the singularity of the potential in the regularit
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Recent Advances in the Theory of Bogoliubov Hamiltonians, natural way as an approximation to the full many-body problem. In this note, we would like to give an overview of recent advances in the study of bosonic quadratic Hamiltonians. In particular, we relate the reported results to what can be called the time-dependent diagonalization problem.
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Blow-Up Profile of Rotating 2D Focusing Bose Gases,hich rotates at a fixed speed of rotation .. First, we study the behavior of the ground state when the coupling constant approaches ., the critical strength of the cubic nonlinearity for the focusing nonlinear Schr?dinger equation. We prove that blow-up always happens at the center of the trap, with
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,Gross–Pitaevskii Evolution for Bose–Einstein Condensates,r the time evolution of initially trapped Bose–Einstein condensates, in a scaling limit where the interaction has a small scattering length. We show that the condensation is preserved by the many-body dynamics and that the evolution of the condensate wave function is governed by the nonlinear Gross–
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