most citedDivergence of Dipole Sums and the Nature of Non-Lorentzian Exponentially Narrow Resonances in One-Dimensional Periodic Arrays of Nanospheres

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physics.optics20056 cited

Coherently tunable third-order nonlinearity in a nanojunction

Vadim A. Markel

A possibility of tuning the phase of the third-order Kerr-type nonlinear susceptibility in a system consisting of two interacting metal nanospheres and a nonlinearly polarizable mo…

physics.optics200546 cited

Local anisotropy and giant enhancement of local electromagnetic fields in fractal aggregates of metal nanoparticles

Sergei V. Karpov, Valeriy S. Gerasimov, Ivan L. Isaev +1

We have shown within the quasistatic approximation that the giant fluctuations of local electromagnetic field in random fractal aggregates of silver nanospheres are strongly correl…

physics.optics200513 cited

Superresolution and Corrections to the Diffusion Approximation in Optical Tomography

George Y. Panasyuk, Vadim A. Markel, John C. Schotland

We demonstrate that the spatial resolution of images in optical tomography is not limited to the fundamental length scale of one transport mean free path. This result is facilitate…

physics.optics2005177 cited

Divergence of Dipole Sums and the Nature of Non-Lorentzian Exponentially Narrow Resonances in One-Dimensional Periodic Arrays of Nanospheres

Vadim A. Markel

Origin and properties of non-Lorentzian spectral lines in linear chains of nanospheres are discussed. The lines are shown to be super-exponentially narrow with the characteristic w…

physics.optics20053 cited

Comment on the use of the method of images for calculating electromagnetic responses of interacting spheres

Vadim A. Markel

In this Comment I argue that the method of images used by Huang, Yu, Gu and co-authors [Phys Rev. E, 65, 21401 (2002); Phys Rev. E., 69, 51402 (2004)] to calculate electromagnetic…