Pressure effects on the magnetic and structural properties of layered manganites. Kamenev, K., V., Marshall, W., G., Lees, M., R., Paul, D., M., Balakrishnan, G., Tissen, V., G., & Nefedova, M., V. Volume 373-3. Pressure effects on the magnetic and structural properties of layered manganites, pages 581-584. Trans Tech Publications Ltd, 2001.
Pressure effects on the magnetic and structural properties of layered manganites [link]Website  abstract   bibtex   
We report on the effect of pressure on layered (La0.6Nd0.4)(1.2)Sr1.8Mn2O7 manganite. At pressures of about 1.9 GPa we observe an enhancement of magnetic and electronic interactions along the c axis. This enhancement is the result of the decrease in the inter-bilayer spacing and of the shift of the Mn atoms away from the center of each bilayer. The overall compressibility along the c axis is absorbed by a decrease in the inter-bilayer spacing while the distance between the apical oxygen atoms on the opposite sides of each bilayer remains almost unchanged.
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 title = {Pressure effects on the magnetic and structural properties of layered manganites},
 type = {inBook},
 year = {2001},
 identifiers = {[object Object]},
 keywords = {CMR materials,high-pressure effects,magnetic phase transition},
 pages = {581-584},
 volume = {373-3},
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 publisher = {Trans Tech Publications Ltd},
 city = {Zurich-Uetikon},
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 notes = {ISI Document Delivery No.: BT27U<br/>Times Cited: 0<br/>Cited Reference Count: 4<br/>Kamenev, KV Marshall, WG Lees, MR Paul, DM Balakrishnan, G Tissen, VG Nefedova, MV<br/>Article; Proceedings Paper<br/>8th European Magnetic Materials and Applications Conference (EMMA 2000)<br/>Jun 07-10, 2000<br/>Kiev, ukraine<br/>Natl Acad Sci Ukraine, European Phys Soc, Minist Educ Ukraine, Sci &amp; Technol Ctr, Off Naval Res Int Field Off, Europe<br/>Brandrain 6, ch-8707 zurich-uetikon, switzerland},
 abstract = {We report on the effect of pressure on layered (La0.6Nd0.4)(1.2)Sr1.8Mn2O7 manganite. At pressures of about 1.9 GPa we observe an enhancement of magnetic and electronic interactions along the c axis. This enhancement is the result of the decrease in the inter-bilayer spacing and of the shift of the Mn atoms away from the center of each bilayer. The overall compressibility along the c axis is absorbed by a decrease in the inter-bilayer spacing while the distance between the apical oxygen atoms on the opposite sides of each bilayer remains almost unchanged.},
 bibtype = {inBook},
 author = {Kamenev, K V and Marshall, W G and Lees, M R and Paul, D M and Balakrishnan, G and Tissen, V G and Nefedova, M V},
 book = {European Magnetic Materials and Applications}
}

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