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Quantum phases in the honeycomb-lattice J1–J3 ferro-antiferromagnetic model

Published Web Location

https://arxiv.org/pdf/2304.06062.pdf
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Creative Commons 'BY' version 4.0 license
Abstract

Using large-scale density-matrix renormalzation group calculations and minimally augmented spin-wave theory, we demonstrate that the phase diagram of the quantum S=12J1-J3 ferro-antiferromagnetic model on the honeycomb lattice differs dramatically from the classical one. It hosts the double-zigzag and Ising-z phases as unexpected intermediaries between ferromagnetic and zigzag states that are also extended beyond their classical regions of stability. In broad agreement with quantum order-by-disorder arguments, these collinear phases replace the classical spiral state.

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