Is multiplexed off-axis holography for quantitative phase imaging more spatial bandwidth-efficient than on-axis holography?
arXiv:1903.12209 · doi:10.1364/JOSAA.36.0000A1
Abstract
Digital holographic microcopy is a thriving imaging modality that attracts considerable research interest due to its ability to not only create excellent label-free contrast, but also supply valuable physical information regarding the density and dimensions of the sample with nanometer-scale axial sensitivity. Three basic holographic recording geometries currently exist, including on-axis, off-axis and slightly off-axis holography, each of them enabling a variety of architectures in terms of bandwidth use and compression capacity. Specifically, off-axis holography and slightly off-axis holography allow spatial hologram multiplexing, enabling compressing more information into the same digital hologram. In this paper, we define an efficiency score used to analyze the various possible architectures, and compare the signal-to-noise ratio and mean squared error obtained using each of them, determining the optimal holographic method.
References in corpus (6)
- Six-pack off-axis holography
- Simultanous two-wavelength phase unwrapping using external module for multiplexing off-axis holography
- Simultaneous three-wavelength unwrapping using external digital holographic multiplexing module
- Review on methods of solving the refractive index-thickness coupling problem in digital holographic microscopy of biological cells
- Simultaneous off-axis multiplexed holography and regular fluorescence microscopy of biological cells
- Single-exposure full-field multi-depth imaging using low-coherence holographic multiplexing