Complex magnetic order in the kagome staircase compound Co3V2O8
Y. Chen, J. W. Lynn, Q. Huang, F. M. Woodward, T. Yildirim, G. Lawes,, A. P. Ramirez, N. Rogado, R. J. Cava, A. Aharony, O. Entin-Wohlman, A. B., Harris

TL;DR
This study investigates the complex magnetic phases of Co3V2O8, revealing multiple incommensurate and commensurate magnetic states, and demonstrates significant spin-charge coupling through neutron diffraction and theoretical modeling.
Contribution
The paper provides detailed neutron diffraction analysis of magnetic phases in Co3V2O8, identifying multiple lock-in transitions and the ferromagnetic ground state, with a theoretical model explaining these phenomena.
Findings
Multiple incommensurate and commensurate magnetic phases identified.
Lock-in transitions occur at specific temperatures.
Strong spin-charge coupling observed at the ferromagnetic transition.
Abstract
Co3V2O8 (CVO) has a geometrically frustrated magnetic lattice, a Kagome staircase. The crystal structure consists of two inequivalent Co sites, one-dimensional chains of Co(2) spine sites, linked by Co(1) cross-tie sites. Neutron powder diffraction has been used to solve the basic magnetic and crystal structures of this system, while polarized and unpolarized single crystal diffraction measurements have been used to reveal a variety of incommensurate phases, interspersed with lock-in transitions to commensurate phases. CVO initially orders magnetically at 11.3 K into an incommensurate, transversely polarized, spin density wave state, with wave vector k=(0,delta,0) with delta=0.55 and the spin direction along the a axis. Delta is found to decrease monotonically with decreasing temperature, and then it locks into a commensurate antiferromagnetic structure with delta=0.5 for 6.9<T<8.6 K.…
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