| Literature DB >> 29047987 |
Stephane Perrin, Audrey Leong-Hoï, Sylvain Lecler, Pierre Pfeiffer, Ivan Kassamakov, Anton Nolvi, Edward Hæggström, Paul Montgomery.
Abstract
In the present work, we have investigated the combination of a superresolution microsphere-assisted 2D imaging technique with low-coherence phase-shifting interference microscopy. The imaging performance of this technique is studied by numerical simulation in terms of the magnification and the lateral resolution as a function of the geometrical and optical parameters. The results of simulations are compared with the experimental measurements of reference gratings using a Linnik interference configuration. Additional measurements are also shown on nanostructures. An improvement by a factor of 4.7 in the lateral resolution is demonstrated in air, thus giving a more isotropic nanometric resolution for full-field surface profilometry in the far field.Year: 2017 PMID: 29047987 DOI: 10.1364/AO.56.007249
Source DB: PubMed Journal: Appl Opt ISSN: 1559-128X Impact factor: 1.980