Insights into nature of magnetization plateaus of a nickel complex [Ni4(CO3)2(aetpy)8](ClO4)4 from a spin-1 Heisenberg diamond cluster
Katarina Karlova, Jozef Strecka, Jozef Hanis, and Masayuki Hagiwara

TL;DR
This study investigates the magnetic properties of a spin-1 Heisenberg diamond cluster, revealing multiple quantum ground states, magnetization plateaus, and potential for low-temperature cooling applications, with implications for a specific nickel complex.
Contribution
It provides a detailed microscopic explanation of fractional magnetization plateaus in a nickel complex using an exact diagonalization of a spin-1 Heisenberg model.
Findings
Multiple magnetization plateaus at 1/4, 1/2, and 3/4 of saturation.
Reproduction of experimental magnetization curves for the nickel complex.
Potential for cryogenic cooling with significant entropy change below 2.3 K.
Abstract
Magnetic and magnetocaloric properties of a spin-1 Heisenberg diamond cluster with two different coupling constants are investigated with the help of an exact diagonalization based on the Kambe's method, which employs a local conservation of composite spins formed by spin-1 entities located in opposite corners of a diamond spin cluster. It is shown that the spin-1 Heisenberg diamond cluster exhibits several intriguing quantum ground states, which are manifested in low-temperature magnetization curves as intermediate plateaus at 1/4, 1/2 and 3/4 of the saturation magnetization. Besides, the spin-1 Heisenberg diamond cluster may also exhibit an enhanced magnetocaloric effect, which may be relevant for a low-temperature refrigeration achieved through the adiabatic demagnetization. It is evidenced that the spin-1 Heisenberg diamond cluster with the antiferromagnetic coupling constants J1/kB…
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Taxonomy
TopicsTheoretical and Computational Physics · Magnetism in coordination complexes · Advanced Condensed Matter Physics
