Abstract
A detailed investigation of ZnCr2Se4 is presented which is dominated by strong ferromagnetic exchange but orders antiferromagnetically at TN=21K. Specific heat and thermal expansion exhibit sharp first-order anomalies at the antiferromagnetic transition. TN is shifted to lower temperatures by external magnetic fields and finally is fully suppressed by a field of 65 kOe. The relative length change ΔL/L(T) is unusually large and exhibits negative thermal expansion α below 75 K down to TN indicating strong frustration of the lattice. Magnetostriction ΔL/L(H) reveals large values comparable to giant magnetostrictive materials. These results point to a spin-driven origin of the structural instability at TN explained in terms of competing ferromagnetic and antiferromagnetic exchange interactions. © 2007 The American Physical Society.
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CITATION STYLE
Hemberger, J., Von Nidda, H. A. K., Tsurkan, V., & Loidl, A. (2007). Large magnetostriction and negative thermal expansion in the frustrated antiferromagnet ZnCr2Se4. Physical Review Letters, 98(14). https://doi.org/10.1103/PhysRevLett.98.147203
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