Abstract |
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We investigate the effect of
surface/interface elasticity in the presence of nanoparticles,
embedded in a semi-infinite elastic medium. The work is
motivated by the technological significance of
self-organization of strained islands in multilayered systems.
Islands, adatom-clusters, or quantum dots are modeled as
inhomogeneities, with properties that differ from the ones
of the surrounding material. Within the framework of continuum
elasticity theory, the Papkovitch–Neuber displacement
methodology coupled with Gurtin’s surface elasticity yields
an analytical solution. The elastic field is expressed in
terms of four sets of spherical and cylindrical harmonics.
Surface elasticity introduces an additional length scale and
results suggest that local stresses are significantly
affected by the size of the nanoparticles.
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Keywords
surface/interface effects, inhomogeneity, half-space
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Authors
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