PubMed Health⌕ Search

Biomedical subjects

I Leizerson

Publications and source records attributed to I Leizerson.

6 recordsLinked to original sources

How does a thin volatile film move?

When a water film evaporates from a mica substrate, an interface similar to a solidification front develops, separating two films of different thicknesses. We show experimentally that the evolution dynamics is controlled mainly by material diffusion through the vapor phase rather than by hydrodynamic flow through the film. Our results illustrate the role of different contributions to pattern formation of volatile liquid films.

Letter↗

Symbiosis of different-sized drops.

We demonstrate that the usual situation of coarsening in crystal growth or Ostwald ripening in evaporating liquid drops is not universal, and when the drops coexist with a microscopically thin continuous surface film, a different behavior is observed. The predicted behavior was investigated experimentally and supported by numerical simulations.

Journal Article↗

Improvement of optical resolution in far-field imaging by optical multiplication.

Based on the idea of the complex filters suggested by Toraldo di Francia in 1952, super-resolved imaging has been achieved by using interferometric image multiplication. The question of whether super-resolution implies a limited field of view is discussed, and an analytical criterion to decide this question is obtained. Three different imaging configurations are investigated, all of which gave a spatial resolution exceeding that corresponding to the full open aperture of the optical system. A resolution limit 55% of the Rayleigh limit was achieved for incoherently illuminated objects. One price that must be paid for the super-resolution is inefficient use of the light source. A second price is a limitation to the usable field of view.

Fourier Analysis↗

Superresolution in far-field imaging.

We demonstrate the feasibility of achieving superresolved images by using Fourier-plane phase masks and image multiplication, which together create effective point-spread functions that are not positive definite and therefore cannot be created by any single Fourier plane mask in a linear system. Three different configurations were investigated, all of which gave a spatial resolution exceeding that corresponding to the full open aperture of the optical system. One price that must be paid for the superresolution is inefficient use of the light source.

Journal Article↗