Title of article
Phonons softening in tip-stretched monatomic nanowires
Author/Authors
Picaud، نويسنده , , Fabien and Corso، نويسنده , , Andrea Dal and Tosatti، نويسنده , , Erio، نويسنده ,
Issue Information
هفته نامه با شماره پیاپی سال 2003
Pages
5
From page
544
To page
548
Abstract
It has been shown in recent experiments that electronic transport through a gold monatomic nanowire is dissipative above a threshold voltage due to excitation of phonons via the electron–phonon interaction. We address that data by computing, via density functional theory, the zone boundary longitudinal phonon frequency of a perfect monatomic nanowire during its mechanical elongation. The theoretical frequency that we find for an ideally strained nanowire is not compatible with experiment if a uniformly distributed stretch is assumed. With the help of a semi-empirical Au–Au potential, we model the realistic nanowire stretching as exerted by two tips. In this model we see that strain tends to concentrate in the junctions, so that the mean strain of the nanowire is roughly one half of the ideal value. With this reduced strain, the calculated phonon softening is in much better agreement with experiment.
Keywords
Gold , Conductivity , phonons , Density functional calculations
Journal title
Surface Science
Serial Year
2003
Journal title
Surface Science
Record number
1695871
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