High-pressure phases of the light alkali metals

Citation
Ne. Christensen et Dl. Novikov, High-pressure phases of the light alkali metals, SOL ST COMM, 119(8-9), 2001, pp. 477-490
Citations number
54
Categorie Soggetti
Apllied Physucs/Condensed Matter/Materiales Science
Journal title
SOLID STATE COMMUNICATIONS
ISSN journal
00381098 → ACNP
Volume
119
Issue
8-9
Year of publication
2001
Pages
477 - 490
Database
ISI
SICI code
0038-1098(2001)119:8-9<477:HPOTLA>2.0.ZU;2-T
Abstract
Quantum-theoretical calculations are used to study high-pressure phases of sodium up to 500 GPa. Sixteen structures, mainly selected on the basis of e xperience obtained from experimental and theoretical high-pressure studies of other alkali metals, Li. Rb and Cs, are examined with respect to stabili ty and pressure-induced structural transformations. Up to approximate to 80 GPa the bcc structure is favored, whereas Na-fcc exists between approximat e to 80 and approximate to 130 GPa, where it becomes dynamically unstable a nd undergoes a rhombohedral distortion to hR1. At this pressure a multitude of lower coordinated structures have very similar enthalpies. The cubic cI 16 structure (as found for Li) may exist between 130 and 170 GPa. Among the structures examined, the calculations show that the Na phase with the lowe st enthalpy has the CsIV structure between 170 and 220 GPa. Beyond 220 GPa a structure, oC8, with Cmca symmetry may be stable over a wide pressure reg ime. Whereas the s --> d transition determines the structural changes of Cs , the behavior of the light alkali metals under pressure is associated with an s --> p transition. Although the emphasis is on sodium, new results for lithium are also presen ted, illustrating similarities and differences between the high-pressure be haviors of these two light alkali metals. At very high pressures Na may bec ome an insulator, whereas so far we did not find any possible high-pressure Li-phases with a non-zero band gap. (C) 2001 Elsevier Science Ltd. All rig hts reserved.