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Classical and Quantum Magnetic Ground States on an Icosahedral Cluster

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arxiv 2010.09445 v2 pith:7Y4L7DER submitted 2020-10-02 cond-mat.other cond-mat.mtrl-scicond-mat.str-el

Classical and Quantum Magnetic Ground States on an Icosahedral Cluster

classification cond-mat.other cond-mat.mtrl-scicond-mat.str-el
keywords classicalicosahedralquantummagnetismstatesapproximantsclusterground
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Recent discovery of various magnetism in Tsai-type quasicrystalline approximants, in whose alloys rare-earth ions located on icosahedral apices are coupled with each other via the Ruderman--Kittel--Kasuya--Yosida interaction, opens an avenue to find novel magnetism originating from the icosahedral symmetry. Here we investigate classical and quantum magnetic states on an icosahedral cluster within the Heisenberg interactions of all bonds. Simulated annealing and numerical diagonalization are performed to obtain the classical and quantum ground states. We obtain qualitative correspondence of classical and quantum phase diagrams. Our study gives a good starting point to understand the various magnetism in not only quasicrystalline approximants but also quasicrystals.

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