Modeling complex quantum systems: Random matrices, BCS theory, and quantum lattice systems (Record no. 768064)

MARC details
000 -LEADER
fixed length control field 04441ntm a22005657a 4500
003 - CONTROL NUMBER IDENTIFIER
control field AT-ISTA
005 - DATE AND TIME OF LATEST TRANSACTION
control field 20250915124059.0
008 - FIXED-LENGTH DATA ELEMENTS--GENERAL INFORMATION
fixed length control field 250915s2025 au ||||| m||| 00| 0 eng d
040 ## - CATALOGING SOURCE
Transcribing agency ISTA
100 ## - MAIN ENTRY--PERSONAL NAME
Personal name Henheik, Sven Joscha
9 (RLIN) 1084227
245 ## - TITLE STATEMENT
Title Modeling complex quantum systems: Random matrices, BCS theory, and quantum lattice systems
Remainder of title Volume 1 of 2
260 ## - PUBLICATION, DISTRIBUTION, ETC. (IMPRINT)
Name of publisher, distributor, etc. ISTA
Date of publication, distribution, etc. 2025
500 ## - GENERAL NOTE
General note Thesis
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Formatted contents note Abstract
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Formatted contents note Acknowledgements
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Formatted contents note About the Author
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Formatted contents note List of Collaborators and Publications
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Formatted contents note Table of Contents
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Formatted contents note List of Figures
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Formatted contents note List of Tables
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Formatted contents note Introduction and Summary of Results
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Formatted contents note I Random Matrices
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Formatted contents note 1 Optimal lower bound on eigenvector overlaps for non-Hermitian random matrices
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Formatted contents note 2 Gaussian fluctuations in the equipartition principle for Wigner matrices
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Formatted contents note 3 Eigenstate thermalisation at the edge for Wigner matrices
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Formatted contents note 4 Out-of-time-ordered correlators for Wigner matrices
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Formatted contents note 5 Eigenvector decorrelation for random matrices
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Formatted contents note 6 Cusp universality for correlated random matrices
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Formatted contents note 7 Prethermalization for deformed Wigner matrices
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Formatted contents note 8 Loschmidt echo for deformed Wigner matrices
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Formatted contents note 9 Eigenstate thermalization hypothesis for translation invariant spin systems
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Formatted contents note II BCS Theory
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Formatted contents note 10 The BCS critical temperature at high density
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Formatted contents note 11 The BCS energy gap at high density
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Formatted contents note 12 Universality in low-dimensional BCS theory
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Formatted contents note 13 Universal behavior of the BCS energy gap
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Formatted contents note 14 Multi-band superconductors have enhanced critical temperatures
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Formatted contents note III Quantum Lattice Systems
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Formatted contents note 15 Local stability of ground states in locally gapped and weakly interacting quantum spin systems
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Formatted contents note 16 On adiabatic theory for gapped fermionic lattice systems
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Formatted contents note 17 Response theory for locally gapped systems
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Formatted contents note Appendix: Miscellaneous Results
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Formatted contents note A Deformational rigidity of Liouville metrics on the torus
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Formatted contents note B Creation rate of Dirac particles at a point source
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Formatted contents note C How a Space-Time Singularity Helps Remove the Ultraviolet Divergence Problem
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Formatted contents note Bibliography
520 ## - SUMMARY, ETC.
Summary, etc. This thesis deals with several different models for complex quantum mechanical systems and is structured in three main parts. In Part I, we study mean field random matrices as models for quantum Hamiltonians. Our focus lies on proving concentration estimates for resolvents of random matrices, so-called local laws, mostly in the setting of multiple resolvents. These estimates have profound consequences for eigenvector overlaps and thermalization problems. More concretely, we obtain, e.g., the optimal eigenstate thermalization hypothesis (ETH) uniformly in the spectrum for Wigner matrices, an optimal lower bound on non-Hermitian eigenvector overlaps, and prethermalization for deformed Wigner matrices. In order to prove our novel multi-resolvent local laws, we develop and devise two main methods, the static Psi-method and the dynamical Zigzag strategy. In Part II, we study Bardeen-Cooper-Schrieffer (BCS) theory, the standard mean field microscopic theory of superconductivity. We focus on asymptotic formulas for the characteristic critical temperature and energy gap of a superconductor and prove universality of their ratio in various physical regimes. Additionally, we investigate multi-band superconductors and show that inter-band coupling effects can only enhance the critical temperature. In Part III, we study quantum lattice systems. On the one hand, we show a strong version of the local-perturbations-perturb-locally (LPPL) principle for the ground state of weakly interacting quantum spin systems with a uniform on-site gap. On the other hand, we introduce a notion of a local gap and rigorously justify response theory and the Kubo formula under the weakened assumption of a local gap. Additionally, we discuss two classes of problems which do not fit into the three main parts of the thesis. These are deformational rigidity of Liouville metrics on the torus and relativistic toy models of particle creation via interior-boundary-conditions (IBCs).
856 ## - ELECTRONIC LOCATION AND ACCESS
Uniform Resource Identifier <a href="https://doi.org/10.15479/AT-ISTA-19540">https://doi.org/10.15479/AT-ISTA-19540</a>
942 ## - ADDED ENTRY ELEMENTS (KOHA)
Source of classification or shelving scheme Dewey Decimal Classification
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Withdrawn status Lost status Source of classification or shelving scheme Damaged status Not for loan Home library Current library Date acquired Total Checkouts Full call number Barcode Date last seen Price effective from Koha item type
  Not Lost Dewey Decimal Classification     Library Library 15/09/2025   Quiet Room AT-ISTA#003315 16/09/2025 15/09/2025 Book

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