Primary role of the structural phase transition in the strongly coupled structure and magnetism of La0.835Sr0.165MnO3 single crystal. Kamenev, K., V., McIntyre, G., J., Paul, D., M., Lees, M., R., & Balakrishnan, G. Physical Review B, 57(12):R6775-R6778, 1998.
Website abstract bibtex We report a neutron diffraction investigation of the role of pressure on the strong coupling between the structural and ferromagnetic phase transitions in La0.835Sr0.165MnO3. The results are summarized in the form of a pressure-temperature phase diagram and reveal the dominant character of the structural changes with respect to the magnetic transitions, which results in a broad metastable area around the crossing point of the structural and magnetic phase transitions. The phase diagram contains a number of extremely unusual features including the pressure independence of the Curie temperature in the orthorhombic phase, a reentrance of the rhombohedral phase at low temperatures, and a change of the type of the magnetic phase transition from second order to first order due to the strong coupling between the structural and the magnetic properties of this material.
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title = {Primary role of the structural phase transition in the strongly coupled structure and magnetism of La0.835Sr0.165MnO3 single crystal},
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notes = {ISI Document Delivery No.: ZE126<br/>Times Cited: 8<br/>Cited Reference Count: 16<br/>Kamenev, KV McIntyre, GJ Paul, DM Lees, MR Balakrishnan, G<br/>American physical soc<br/>College pk},
abstract = {We report a neutron diffraction investigation of the role of pressure on the strong coupling between the structural and ferromagnetic phase transitions in La0.835Sr0.165MnO3. The results are summarized in the form of a pressure-temperature phase diagram and reveal the dominant character of the structural changes with respect to the magnetic transitions, which results in a broad metastable area around the crossing point of the structural and magnetic phase transitions. The phase diagram contains a number of extremely unusual features including the pressure independence of the Curie temperature in the orthorhombic phase, a reentrance of the rhombohedral phase at low temperatures, and a change of the type of the magnetic phase transition from second order to first order due to the strong coupling between the structural and the magnetic properties of this material.},
bibtype = {article},
author = {Kamenev, K V and McIntyre, G J and Paul, D M and Lees, M R and Balakrishnan, G},
journal = {Physical Review B},
number = {12}
}
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