TTNR combines global-optimization TNR with a new thermal density-matrix construction to extract high-accuracy CFT data at 2D quantum thermal transitions.
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cond-mat.str-el 2years
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Deconfined criticality in a 1D lattice model is shown to be an intrinsically gapless topological state whose mixed anomaly enforces robust edge modes without gapped counterparts.
citing papers explorer
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Global Tensor Network Renormalization for 2D Quantum systems: A new window to probe universal data from thermal transitions
TTNR combines global-optimization TNR with a new thermal density-matrix construction to extract high-accuracy CFT data at 2D quantum thermal transitions.
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Deconfined criticality as intrinsically gapless topological state in one dimension
Deconfined criticality in a 1D lattice model is shown to be an intrinsically gapless topological state whose mixed anomaly enforces robust edge modes without gapped counterparts.