Orbital degrees of freedom and ordering phenomena in a 4f system. Amara, M., Luca, S., E., Galéra, R., M., Aviani, I., & Bérar, J., F. Journal of Solid State Chemistry, 171(1-2):69-75, 2003. abstract bibtex Due to orbital degeneracy, a 4f electronic shell has the ability to distort when influenced by an electrostatic, magnetic or collective intersite field. In case of collective phenomena, the 4f asphericity which develops may result in a strain mode and/or introduce a new charge periodicity. The first is accessible via dilatometric techniques whereas the second needs a microscopic probe, X-rays, to be detected. To illustrate the efficiency of these techniques for sensing the 4f asphericity, the study of NdMg's collinear and multiaxial phases is introduced. © 2003 Elsevier Science (USA). All rights reserved.
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title = {Orbital degrees of freedom and ordering phenomena in a 4f system},
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source_type = {Labazan, I., Rudić, S., & Milošević, S. (2000). Nonlinear effects in pulsed cavity ringdown spectroscopy of lithium vapour. Chemical Physics Letters, 320(5–6), 613–622. https://doi.org/10.1016/S0009-2614(00)00286-4 Bilušić, A., Smontara, A., Lasjaunias, J},
abstract = {Due to orbital degeneracy, a 4f electronic shell has the ability to distort when influenced by an electrostatic, magnetic or collective intersite field. In case of collective phenomena, the 4f asphericity which develops may result in a strain mode and/or introduce a new charge periodicity. The first is accessible via dilatometric techniques whereas the second needs a microscopic probe, X-rays, to be detected. To illustrate the efficiency of these techniques for sensing the 4f asphericity, the study of NdMg's collinear and multiaxial phases is introduced. © 2003 Elsevier Science (USA). All rights reserved.},
bibtype = {article},
author = {Amara, M and Luca, S E and Galéra, R M and Aviani, I and Bérar, J F},
journal = {Journal of Solid State Chemistry},
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