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Deformed Fredkin spin chain with extensive entanglement

  • Olof Salberger
  • , Takuma Udagawa
  • , Zhao Zhang
  • , Hosho Katsura
  • , Israel Klich
  • , Vladimir Korepin
  • Stony Brook University
  • The University of Tokyo
  • University of Virginia

Research output: Contribution to journalArticlepeer-review

46 Scopus citations

Abstract

We introduce a new spin chain which is a deformation of the Fredkin spin chain and has a phase transition between bounded and extensive entanglement entropy scaling. In this chain, spins have a local interaction of three nearest neighbors. The Hamiltonian is frustration-free and its ground state can be described analytically as a weighted superposition of Dyck paths that depends on a deformation parameter t. In the purely spin 1/2 case, whenever , the entanglement entropy obeys an area law: it is bounded from above by a constant, when the size of the block n increases. When a local color degree of freedom is introduced and t > 1 the entanglement entropy increases linearly, while for t < 1 an area law is obeyed. The half-chain entanglement entropy is tightly bounded by where 2n is the length of the chain, and s is the number of colors. Our chain fosters a new example for a significant boost to entropy and for the existence of the associated critical rainbow phase where the entanglement entropy scales with volume that discovered by Zhang, Ahmadain and Klich (Proc. Natl Acad. Sci 2017).

Original languageEnglish
Article number063103
JournalJournal of Statistical Mechanics: Theory and Experiment
Volume2017
Issue number6
DOIs
StatePublished - Jun 15 2017

Keywords

  • entanglement entropies
  • ladders and planes
  • rigorous results in statistical mechanics
  • solvable lattice models
  • spin chains

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