
Binary sub-wavelength diffractive lenses with long focal depth and high transverse resolution
Author(s) -
Donghai Feng,
Pan Ou,
Lishuang Feng,
Shuling Hu,
Chunxi Zhang
Publication year - 2008
Publication title -
optics express
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.394
H-Index - 271
ISSN - 1094-4087
DOI - 10.1364/oe.16.020968
Subject(s) - optics , cardinal point , focal length , transverse plane , wavelength , diffraction , lens (geology) , depth of focus (tectonics) , focal point , physics , polarization (electrochemistry) , materials science , geology , paleontology , chemistry , subduction , structural engineering , tectonics , engineering
This study explores two-dimensional binary sub-wavelength diffractive lenses (BSDLs) for implementing long focal depth and high transverse resolution based on the rigorous electromagnetic theory and the finite-difference time-domain method. Focusing performances, such as the actual focal depth, the ratio between the focal depth of the designed BSDL and the focal depth of the conventional sub-wavelength lens and the spot size of the central lobe at the actual focal plane, for different f-numbers, have been studied in the case of TE incidence polarization wave. The rigorous numerical results indicate that the designed BSDLs indeed have long focal depth and high transverse resolution by modulating the binary sub-wavelength characteristic sizes. Because BSDLs have the ability for monolithic integration and can require only single step fabrication, the investigations may provide useful information for BSDLs' application in micro-optical systems.