Planar diffractive lenses: fundamentals, functionalities, and applications
Traditional objective lenses in modern microscopy, based on the refraction of light, are
restricted by the Rayleigh diffraction limit. The existing methods to overcome this limit can be …
restricted by the Rayleigh diffraction limit. The existing methods to overcome this limit can be …
High resolution optical coherence tomography
Imaging cellular and extracellular structures and processes in situ and in vivo is highly
desired for the understanding and diagnosis of human diseases. High resolution optical …
desired for the understanding and diagnosis of human diseases. High resolution optical …
E2E-BPF microscope: extended depth-of-field microscopy using learning-based implementation of binary phase filter and image deconvolution
Several image-based biomedical diagnoses require high-resolution imaging capabilities at
large spatial scales. However, conventional microscopes exhibit an inherent trade-off …
large spatial scales. However, conventional microscopes exhibit an inherent trade-off …
Dispersion compensation in Fourier domain optical coherence tomography using the fractional Fourier transform
We address numerical dispersion compensation based on the use of the fractional Fourier
transform (FrFT). The FrFT provides a new fundamental perspective on the nature and role …
transform (FrFT). The FrFT provides a new fundamental perspective on the nature and role …
Real-time multi-angle projection imaging of biological dynamics
We introduce a cost-effective and easily implementable scan unit that converts any camera-
based microscope with optical sectioning capability into a multi-angle projection imaging …
based microscope with optical sectioning capability into a multi-angle projection imaging …
Design of binary phase filters for depth-of-focus extension via binarization of axisymmetric aberrations
We present a novel design approach for a binary phase mask with depth-of-focus (DoF)
extension ability. Our method considers that the binarized version of an axisymmetric …
extension ability. Our method considers that the binarized version of an axisymmetric …
Creation of an ultra-long depth of focus super-resolution longitudinally polarized beam with a ternary optical element
Y Zha, J Wei, H Wang, F Gan - Journal of Optics, 2013 - iopscience.iop.org
We proposed a method to design a ternary optical element in order to achieve a needle of
super-resolution longitudinally polarized beam with ultra-long depth of focus, and obtained a …
super-resolution longitudinally polarized beam with ultra-long depth of focus, and obtained a …
Long-range optical coherence tomography with extended depth-of-focus: a visual feedback system for smart laser osteotomy
This work presents a long-range and extended depth-of-focus optical coherence
tomography (OCT) system using a Bessel-like beam (BLB) as a visual feedback system …
tomography (OCT) system using a Bessel-like beam (BLB) as a visual feedback system …
Extended depth of focus multiphoton microscopy via incoherent pulse splitting
We present a beam splitter mask that can be easily added to a multiphoton raster scanning
microscope to extend the depth of focus five-fold at a small loss in lateral resolution. The …
microscope to extend the depth of focus five-fold at a small loss in lateral resolution. The …
A topology optimization implementation for depth-of-focus extension of binary phase filters
Binary phase filters (BPFs) form a special class of optical structure characterized by their
distinct concentric rings of alternating 0-π phases. Once placed in the pupil plane of a …
distinct concentric rings of alternating 0-π phases. Once placed in the pupil plane of a …