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Dresden 2017 – wissenschaftliches Programm

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TT: Fachverband Tiefe Temperaturen

TT 12: Correlated Electrons: Frustrated Magnets - General 1

TT 12.5: Vortrag

Montag, 20. März 2017, 16:00–16:15, HSZ 03

New kagome systems YCu3(OH)6Cl3 and GaxCu4−x(OH)6Cl2 — •Pascal Puphal1, Michael Bolte1, Denis Sheptyakov2, Andrej Pustogow3, Martin Dressel3, Michael Baenitz4, and Cornelius Krellner11Goethe-University Frankfurt am Main — 2Laboratory for Neutron Scattering and Imaging, PSI, Villigen — 31. PI, Stuttgart University — 4MPI-CPfS, Dresden

Herbertsmithite ZnCu3(OH)6Cl2 is a highly frustrated kagomé system, which has an antiferromagnetic superexchange interaction of J = 17 meV, but no long-range order has been observed down to T = 50 mK. We have successfully prepared GaxCu4−x(OH)6Cl2, with a three valent ion instead of Zn2+, which should lead to a Dirac metal as proposed by I. I. Mazin et. al. [1]. We synthesized powder samples of this compound with different substitution amounts of x < 1. Similar to Zn the increasing Ga amount slowly suppresses the ordering at 6.5 K, but the compound stays insulating which is also reflected in its green colour. We show magnetometry, specific heat as well as optical and local probing data like NMR. The second part of the contribution is about YCu3(OH)6Cl3 which shows a new kapellasite like structure. Using hydrothermal growth we synthesized single crystals of up to 2 x 2 x 0.5 mm. The structure is a slightly distorted kagome layer with two copper positions giving a new two-dimensional frustrated arrangement. The susceptibility as well as specific heat show a weak antiferromagnetic ordering at 2.2 K while the system has a Weiss temperature of -104 K resulting in a frustration coefficient of 50.

[1] I. I. Mazin et al., Nature Communications 5, 4261 (2014)

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