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Phys. Rev. B 68, 174106 (2003) [10 pages]

Molecular dynamics simulation of the order-disorder phase transition in solid NaNO2

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Wei-Guo Yin1,*, Chun-Gang Duan1, W. N. Mei1, Jianjun Liu1,2, R. W. Smith1, and J. R. Hardy2
1Department of Physics, University of Nebraska, Omaha, Nebraska 68182, USA
2Department of Physics and Center for Electro-Optics, University of Nebraska, Lincoln, Nebraska 68588, USA

Received 30 January 2003; revised 23 July 2003; published 17 November 2003

We present molecular dynamics simulations of solid NaNO2 using pair potentials with the rigid-ion model. The crystal potential surface is calculated by using an a priori method which integrates the ab initio calculations with the Gordon-Kim electron gas theory. This approach is carefully examined by using different population analysis methods and comparing the intermolecular interactions resulting from this approach with those from the ab initio Hartree-Fock calculations. Our numerics show that the ferroelectric-paraelectric phase transition in solid NaNO2 is triggered by rotation of the nitrite ions around the crystallographical c axis, in agreement with recent x-ray experiments [Gohda et al., Phys. Rev. B 63, 14101 (2000)]. The crystal-field effects on the nitrite ion are also addressed. An internal charge-transfer effect is found.

© 2003 The American Physical Society

URL:
http://link.aps.org/doi/10.1103/PhysRevB.68.174106
DOI:
10.1103/PhysRevB.68.174106
PACS:
64.60.Cn, 61.43.Bn, 64.70.Pf

*Electronic address: wgyin@yahoo.com