A Comparative Analysis of Quantum Entanglement Entropy in Topological Insulators and Weyl Semimetals
Keywords:
Quantum Entanglement Entropy, Topological Insulators, Weyl Semimetals, Holographic Duality, Tensor Networks, Quantum Computing, Topological Phases, SpintronicsAbstract
This study explores the nuanced phenomena of quantum entanglement entropy within topological insulators and Weyl semimetals, two pivotal classes of quantum materials. By employing holographic duality and tensor network approaches, we delineate key differences in entanglement scaling, unveiling potential implications for quantum computing. Our findings reveal distinct entropic signatures that could drive future material innovations and deepen comprehension of non-trivial topological phases.
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