Long-range and short-range magnetic correlations, and microscopic origin of net magnetization in the spin-1 trimer chain compound CaNi3P4O14
A. K. Bera, S. M. Yusuf, Amit Kumar, M. Majumder, K. Ghoshray, L., Keller

TL;DR
This study investigates the magnetic correlations and microscopic origin of net magnetization in CaNi3P4O14, revealing a 3D long-range magnetic order with ferromagnetic trimers and short-range 1D correlations, challenging previous predictions of ferrimagnetism.
Contribution
It provides the first detailed neutron diffraction analysis of CaNi3P4O14, clarifying its magnetic structure and the origin of net magnetization, contrasting earlier theoretical predictions.
Findings
Establishes 3D long-range magnetic order below 16 K with ferromagnetic trimers
Reveals broad diffuse magnetic scattering indicating 1D short-range correlations
Confirms ferromagnetic correlations along b axis and weak antiferromagnetic along a and c axes
Abstract
Spin-spin correlations and microscopic origin of net magnetization in the spin-1 trimer chain compound CaNi3P4O14 have been investigated by powder neutron diffraction. The present study reveals a 3D long-range magnetic ordering below 16 K where the magnetic structure consists of ferromagnetic trimers that are coupled ferromagnetically along the spin-chain. The moment components along the a and c axes arrange antiferromagnetically. Our study establishes that the uncompensated moment components along the b axis result in a net magnetization per unit cell. The magnetic structure, determined in the present study, is in agreement with the results of recent first principles calculation; however, it is in contrast to a fascinating experimental prediction of ferrimagnetic ordering based on the periodicity of the exchange interactions in CaNi3P4O14. Our study also confirms the presence of broad…
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