Exact solution of a cluster model with next-nearest-neighbor interaction

Author:

Yanagihara Yuji1,Minami Kazuhiko2

Affiliation:

1. General Education, Fukui College, National Institute of Technology, Geshi-cho, Sabae-shi, Fukui 916-8507, Japan

2. Graduate School of Mathematics, Nagoya University, Furo-cho, Chikusa-ku, Nagoya, Aichi 464-8602, Japan

Abstract

Abstract A 1D cluster model with next-nearest-neighbor interactions and two additional composite interactions is solved; the free energy is obtained and a correlation function is derived exactly. The model is diagonalized by a transformation obtained automatically from its interactions, which is an algebraic generalization of the Jordan–Wigner transformation. The gapless condition is expressed as a condition on the roots of a cubic equation, and the phase diagram is obtained exactly. We find that the distribution of roots for this algebraic equation determines the existence of long-range order, and we again obtain the ground-state phase diagram. We also derive the central charges of the corresponding conformal field theory. Finally, we note that our results are universally valid for an infinite number of solvable spin chains whose interactions obey the same algebraic relations.

Publisher

Oxford University Press (OUP)

Subject

General Physics and Astronomy

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