Daniel Grieser et.al.: Perturbation theory for plasmonic eigenvalues
- Author(s):
Daniel Grieser, Hannes Uecker , Svend-Age Biehs, Oliver Huth, Felix Rueting, Martin Holthaus
- Title:
Perturbation theory for plasmonic eigenvalues
- Date of Upload:
2010-03-25
- Article:
Phys. Rev. B 78, 085414 (2008), The American Physical Society
- Keywords:
plasmonic eigenvalues, perturbation theory
- Abstract:
- We develop a perturbative approach for calculating, within the
quasistatic approximation, the shift of surface resonances in response
to a deformation of a dielectric volume. Our strategy is based on the
conversion of the homogeneous system for the potential which determines
the plasmonic eigenvalues into an inhomogeneous system for the
potential’s derivative with respect to the deformation strength and on
the exploitation of the corresponding compatibility condition. The
resulting general expression for the first-order shift is verified for
two explicitly solvable cases and for a realistic example of a deformed
nanosphere. It can be used for scanning the huge parameter space of
possible shape fluctuations with only quite small computational effort.
- URL: http://www.physik.uni-oldenburg.de/condmat/Biehs/pubs/p_prb09.pdf (text/plain)
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Last Update: Thu Mar 25 16:46:51 2010