Dynamics of a quantum spin liquid /

This thesis presents an exact theoretical study of dynamical correlation functions in different phases of a two-dimensional quantum spin liquid. By calculating the dynamical spin structure factor and the Raman scattering cross section, this thesis shows that there are salient signatures--qualitative...

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Bibliographic Details
Main Authors: Knolle, Johannes
Published: Springer,
Publisher Address: Cham :
Publication Dates: [2016]
Literature type: Book
Language: English
Series: Springer theses,
Subjects:
Summary: This thesis presents an exact theoretical study of dynamical correlation functions in different phases of a two-dimensional quantum spin liquid. By calculating the dynamical spin structure factor and the Raman scattering cross section, this thesis shows that there are salient signatures--qualitative and quantitative--of the Majorana fermions and the gauge fluxes emerging as effective degrees of freedom in the exactly solvable Kitaev honeycomb lattice model. The model is a representative of a class of spin liquids with Majorana fermions coupled to Z2 gauge fields. The qualitative features of
Item Description: "Doctoral thesis accepted by the Max Planck Institute for the Physics of Complex Systems, Dresden, Germany."
Carrier Form: xv, 140 pages : illustrations (some color) ; 24 cm.
Bibliography: Includes bibliographical references.
ISBN: 9783319239514
3319239511
Index Number: QC174
CLC: O413
Call Number: O413/K724
Contents: Introduction -- Kitaev's Honeycomb Lattice Model -- Dynamic Spin Correlations -- Mapping to a Quantum Quench -- Results for the Structure Error -- Non-Abelian Phase and the Effect of Disorder -- Raman Scattering -- Conclusion and Outlook -- Appendix A: Pfaffians from Path Integrals -- Appendix B: X-Ray Edge and Singular Integral Equations -- Appendix C: Exact Diagonalization of Four Dimers -- Appendix D: Calculation of Matrix Elements.