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Magnetism in the novel spin system Ni5(TeO3)4Br2 with two-dimensional frustrated geometry

A Zorko1, D Arčon1,2, J Dolinšek1,2, Z Jagličić3, A Jeromen4, H van Tol5, L C Brunel5 and H Berger6

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A study of magnetism in the novel 2D spin system Ni5(TeO3)4Br2, featuring a frustrated triangular geometry, is presented. We combine magnetization, heat capacity and high-field electron spin resonance measurements to investigate a long-range magnetic ordering below TN = 29 K. Additional peculiar behaviour, most likely related to the spin system, is observed below T' = 14 K.


PACS

75.50.Ee Antiferromagnetics

75.25.+z Spin arrangements in magnetically ordered materials (including neutron and spin-polarized electron studies, synchrotron-source x-ray scattering, etc.)

75.60.Ej Magnetization curves, hysteresis, Barkhausen and related effects

76.30.-v Electron paramagnetic resonance and relaxation

75.40.Cx Static properties (order parameter, static susceptibility, heat capacities, critical exponents, etc.)

Subjects

Condensed matter: electrical, magnetic and optical

Dates

Issue 14 (11 April 2007)

Received 4 August 2006

Published 23 March 2007



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    A Zorko et al 2007 J. Phys.: Condens. Matter 19 145278

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