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Origin of spontaneous electric dipoles in homonuclear niobium clusters

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arxiv cond-mat/0410564 v1 pith:V2GWWKIZ submitted 2004-10-21 cond-mat.mtrl-sci

Origin of spontaneous electric dipoles in homonuclear niobium clusters

classification cond-mat.mtrl-sci
keywords dipolemomentsclustersclusterdipoleselectricelectronichomonuclear
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Surprisingly large spontaneous electric dipole moments recently observed in homonuclear niobium clusters below 100 K (Moro el. al. Science 300, 1265 (2003)) are explained using first-principles electronic structure calculations. The calculated moments for Nb(n) (n <= 15) closely follow the experimental data in which large dipole moments are seen for n = 11-14. We establish that the dipoles are strongly correlated with the geometrical asymmetry of the clusters. The magnitude of the dipole moment is roughly proportional to the spread in the principal moments of inertia and its direction tends to align along the axis of the largest principal moment. Charge deformation densities reveal directional, partially covalent bonds that enhance the formation of asymmetric geometries. Classical simulations of the deflection of a cluster in a molecular beam reveal that the electronic dipole may persist at higher temperatures, but is masked by the rotational dynamics of the cluster.

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