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Berlin 2005 – wissenschaftliches Programm

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TT: Tiefe Temperaturen

TT 16: Posters Correlated Electrons, Measuring Devices, Cryotechnique

TT 16.45: Poster

Samstag, 5. März 2005, 11:00–16:30, Poster TU C

Interplay between structure, magnetism and ordering phenomena in La2−xSrxCoO4 — •M. Cwik1, M. Benomar1, M. Haider1, T. Lorenz1, Y. Sidis2, and M. Braden11II. Physikalisches Institut, Universität zu Köln — 2Laboratoire Léon Brillouin, C.E.A./C.N.R.S., France

La2CoO4 is an antiferromagnetic insulator with TN ∼ 275 K and Co2+ in the S=3/2 high-spin state [1]. Doping with Sr induces a Co2+/Co3+ mixed valency, destroys long-range antiferromagnetic order and removes the concomitant orthorhombic distortion of the K2NiF4 structure. In the half-doped compound La1.5Sr0.5CoO4 spin and charge order have been found [2,3]. However, the effective magnetic coupling and the role of the three possible Co3+ spin states are not yet clarified. So far, it is also unknown how variations of doping affect both types of order in the La2−xSrxCoO4 series. We present a study of structure, spin order, charge order, magnetic fluctuations, resistivity, and susceptibility on high-quality single crystals for 0.2≤x≤1.0. We find a drastic change in the tetragonal CoO6-octahedra distortion which is not consistent with a simple ionic picture and incommensurable spin order next to the half-doped compound. An analysis of the magnon dispersion suggests an effective three-dimensional magnetic coupling scheme away from a simple frustrated antiferromagnetic square lattice with competing nearest- and next-nearest-neighbor interaction.

[1] K. Yamada et al., Phys. Rev. B 39, 2236 (1989)

[2] I. A. Zaliznyak et al., Phys. Rev. Lett. 85, 4353 (2000)

[3] I. A. Zaliznyak et al., Phys. Rev. B 64, 195117 (2001)

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