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Titlebook: Dynamics of a Quantum Spin Liquid; Johannes Knolle Book 2016 Springer International Publishing Switzerland 2016 Dynamic Spin Correlations.

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Textbook Mar 1994Latest editionwas unsuccessful, their systematic experimental inquiry of the corpuscular nature of matter lay the foundations for modern chemistry (Newman .) and in the process they created valuable new materials, e.g. porcelain was rediscovered by J.F. Böttger in 1708 (Hildyard .).
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https://doi.org/10.1007/978-1-349-23410-3 obtained and remains a challenging numerical task (Caux 2009; Mourigal et al. 2013). It turns out that the situation is similar in the case of the Kitaev model, for which I calculate the spin correlation function numerically exactly. I discuss at the end of this chapter what I precisely mean by . r
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Dynamic Spin Correlations: Mapping to a Quantum Quench, obtained and remains a challenging numerical task (Caux 2009; Mourigal et al. 2013). It turns out that the situation is similar in the case of the Kitaev model, for which I calculate the spin correlation function numerically exactly. I discuss at the end of this chapter what I precisely mean by . r
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Raman Scattering,magnon states which are relevant for magnetism (Shastry and Shraiman 1990). Thereby, Raman scattering has been successfully used for understanding the dynamics and interactions of magnons in various antiferromagnetically ordered 3d transition metal oxides, especially in the high-Tc superconductor pa
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Book 2016lculating 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 latti
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Non-Abelian Phase and the Effect of Disorder,nly interested in the spin liquid properties. Thus, the objective of this chapter is to calculate the spin excitations in such an exactly solvable non-Abelian spin liquid and to search for salient signatures of the phase in the structure factor.
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