General conditions on site-dependent interaction ranges in Z(N) quantum chains ensure free-particle eigenspectra, with dynamical critical exponents computed for constant even/odd-site ranges.
Energy spectrum and critical exponents of the free parafermion $Z_N$ spin chain
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abstract
Results are given for the ground state energy and excitation spectrum of a simple $N$-state $Z_N$ spin chain described by free parafermions. The model is non-Hermitian for $N \ge 3$ with a real ground state energy and a complex excitation spectrum. Although having a simpler Hamiltonian than the superintegrable chiral Potts model, the model is seen to share some properties with it, e.g., the specific heat exponent $\alpha=1-2/N$ and the anisotropic correlation length exponents $\nu_\parallel =1$ and $\nu_\perp=2/N$.
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cond-mat.stat-mech 1years
2025 1verdicts
UNVERDICTED 1representative citing papers
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Free fermionic and parafermionic multispin quantum chains with non-homogeneous interacting ranges
General conditions on site-dependent interaction ranges in Z(N) quantum chains ensure free-particle eigenspectra, with dynamical critical exponents computed for constant even/odd-site ranges.