On the simplest scale invariant Tree-Tensor-States preserving the quantum symmetries of the antiferromagnetic XXZ chain
arXiv:1710.02949 · doi:10.1088/1751-8121/aaa814
Abstract
For the line of critical antiferromagnetic XXZ chains with coupling and anisotropy , we describe how the block-spin renormalization procedure preserving the symmetry introduced by Martin-Delgado and Sierra [Phys. Rev. Lett. 76, 1146 (1996)] can be reformulated as the translation-invariant scale-invariant Tree-Tensor-State of the smallest dimension that is compatible with the quantum symmetries of the model. The properties of this Tree-Tensor-State are studied in detail via the ground-state energy, the magnetizations and the staggered magnetizations, as well as the Shannon-Renyi entropies characterizing the multifractality of the components of the wave function.
v2=final version (17 pages)
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