Mixed-order transition in the antiferromagnetic quantum Ising chain in a field
The antiferromagnetic quantum Ising chain has a quantum critical point which belongs to the universality class of the transverse Ising model (TIM). When a longitudinal field (h) is switched on, the phase transition is preserved, which turns to first order for h/Γ → ∞, Γ being the strength of the tra...
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Veröffentlicht in: | Physical review. B 2021-05, Vol.103 (17), Article 174404 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | The antiferromagnetic quantum Ising chain has a quantum critical point which belongs to the universality class of the transverse Ising model (TIM). When a longitudinal field (h) is switched on, the phase transition is preserved, which turns to first order for h/Γ → ∞, Γ being the strength of the transverse field. Here we will re-examine the critical properties along the phase transition line. During a quantum block renormalization group calculation, the TIM fixed point for h/Γ > 0 is found to be unstable. Using DMRG techniques, we calculated the entanglement entropy and the spin-spin correlation function, both of which signaled a divergent correlation length at the transition point with the TIM exponents. At the same time, the bulk correlation function has a jump and the end-to-end correlation function has a discontinuous derivative at the transition point. Consequently for finite h/Γ the transition is of mixed order. |
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ISSN: | 2469-9950 2469-9969 |
DOI: | 10.1103/PhysRevB.103.174404 |