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Symmetry-preserving lattice collapse in tetragonal SrFe2−xRuxAs2 (x=0,0.2): A combined experimental and theoretical study

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Kasinathan,  D.
Physics of Correlated Matter, Max Planck Institute for Chemical Physics of Solids, Max Planck Society;

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Schmitt,  M.
Max Planck Institute for Chemical Physics of Solids, Max Planck Society;

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Koepernik,  K.
Max Planck Institute for Chemical Physics of Solids, Max Planck Society;

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Ormeci,  A.
Chemical Metal Science, Max Planck Institute for Chemical Physics of Solids, Max Planck Society;

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Meier,  K.
Chemical Metal Science, Max Planck Institute for Chemical Physics of Solids, Max Planck Society;

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Schwarz,  U.
Ulrich Schwarz, Chemical Metal Science, Max Planck Institute for Chemical Physics of Solids, Max Planck Society;

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Hanfland,  M.
Max Planck Institute for Chemical Physics of Solids, Max Planck Society;

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Geibel,  C.
Christoph Geibel, Physics of Quantum Materials, Max Planck Institute for Chemical Physics of Solids, Max Planck Society;

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Grin,  Y.
Juri Grin, Chemical Metal Science, Max Planck Institute for Chemical Physics of Solids, Max Planck Society;

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Leithe-Jasper,  A.
Andreas Leithe-Jasper, Chemical Metal Science, Max Planck Institute for Chemical Physics of Solids, Max Planck Society;

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Rosner,  H.
Helge Rosner, Physics of Correlated Matter, Max Planck Institute for Chemical Physics of Solids, Max Planck Society;

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Citation

Kasinathan, D., Schmitt, M., Koepernik, K., Ormeci, A., Meier, K., Schwarz, U., et al. (2011). Symmetry-preserving lattice collapse in tetragonal SrFe2−xRuxAs2 (x=0,0.2): A combined experimental and theoretical study. Physical Review B, 84(5): 054509, pp. 1-9. doi:10.1103/PhysRevB.84.054509.


Cite as: https://hdl.handle.net/11858/00-001M-0000-0015-221D-1
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